Thursday, January 4, 2024

The Fractal Frontier


How chaos theory mediates between quantum theory and thermodynamics
Dec 2022, phys.org

Sounds important, not sure I understand:

When a large number of quantum particles are in play at the same time, the equations of quantum theory become so complicated that even the best supercomputers in the world have no chance of solving them [and therefore we can't get temperature from quantum particles, only classical ones]. 

Only where chaos prevails do the well-known rules of thermodynamics follow from quantum physics [according to their super-simulations].

[They describe a system as behaving "quantum chaotically".]

This is one of the first cases in which the interplay between three important theories has been rigorously demonstrated by many-particle computer simulations: quantum theory, thermodynamics and chaos theory.

via Institute of Theoretical Physics at Vienna University of Technology: Mahdi Kourehpaz et al, Canonical Density Matrices from Eigenstates of Mixed Systems, Entropy (2022). DOI: 10.3390/e24121740


Researchers discover superconductive images are actually 3D and disorder-driven fractals
May 2023, phys.org

"Electronic fractals" it's being called. And I guess we already know this: "Advancements with superconductivity hinge on advances in quantum materials. When electrons inside of quantum materials undergo a phase transition, the electrons can form intricate patterns, such as fractals."

But now, with better, higher resolution imaging, they see that the fractals are not just on the surface, but indeed 3-dimensional, so the entire crystal is made of them.

Sudden implication: "Correlation length -- the distance over which the nematic order maintains coherence -- is larger than the field of view of the experiment" (because you know fractals are fractional dimensions that seem to "steal" space from the higher dimension).

In case you were wondering: Superconductor Bi2-xPbzSr2-yLayCuO6+x (BSCO), that's it's name.

via Purdue, Harvard, University of Illinois at Urbana-Champaign, and Penn State: Can-Li Song et al, Critical nematic correlations throughout the superconducting doping range in Bi2-xPbzSr2-yLayCuO6+x, Nature Communications (2023). DOI: 10.1038/s41467-023-38249-3


The brain's ability to perceive space expands like the universe
Jan 2023, phys.org

Salk scientists have discovered that time spent exploring an environment causes neural representations to grow in surprising ways.

Neurons in the hippocampus essential for spatial navigation, memory, and planning represent space in a manner that conforms to a nonlinear hyperbolic geometry—a three-dimensional expanse that grows outward exponentially.

The size of that space grows with time spent in a place, increasing in a logarithmic fashion that matches the maximal possible increase in information being processed by the brain.

via the Salk Institute: Huanqiu Zhang et al, Hippocampal spatial representations exhibit a hyperbolic geometry that expands with experience, Nature Neuroscience (2022). DOI: 10.1038/s41593-022-01212-4

See also: New research finds that collective neural activity is shaped like the surface of a doughnut via Norwegian University of Science and Technology's Kavli Institute for Systems Neuroscience: Richard J. Gardner et al, Toroidal topology of population activity in grid cells, Nature (2022). DOI: 10.1038/s41586-021-04268-7

And: New method to determine the dimensionality of complex networks through hyperbolic geometry via University of Barcelona: Pedro Almagro et al, Detecting the ultra low dimensionality of real networks, Nature Communications (2022). DOI: 10.1038/s41467-022-33685-z

An artistic depiction of a wave encountering an exponentially curved spacetime - Matias Koivurova, University of Eastern Finland - 2023

Fractons as information storage: Not yet tangible, but close
May 2023, phys.org

Fuck is a fracton come on man (we're copying most of the article here, dense stuff)

Fractons are fractions of spin excitations and are not allowed to possess kinetic energy. As a consequence, they are completely stationary and immobile. This makes fractons new candidates for perfectly secure information storage. Especially since they can be moved under special conditions, namely piggyback on another quasiparticle.

"Fractons have emerged from a mathematical extension of quantum electrodynamics, in which electric fields are treated not as vectors but as tensors -- completely detached from real materials" 

In order to be able to observe fractons experimentally in the future, it is necessary to find model systems that are as simple as possible: Therefore, octahedral crystal structures with antiferromagnetically interacting corner atoms were modeled first. 

(Obviously)

...included quantum fluctuations in the calculation of this octahedral solid-state system for the first time, and see they do not enhance the visibility of fractons, but on the contrary, completely blur them, even at absolute zero temperature

via Helmholtz Association of German Research Centres, Indian Institute of Technology in Chennai: Nils Niggemann et al, Quantum Effects on Unconventional Pinch Point Singularities, Physical Review Letters (2023). DOI: 10.1103/PhysRevLett.130.196601


Punctuation in literature of major languages is intriguingly mathematical
Apr 2023, phys.org

First, can someone just tell me how an institute of nuclear physics started doing research on punctuation usage?

Punctuation turns out to be a universal and indispensable complement to the mathematical perfection of every language studied.

Thanks. 

And this isn't their first study on the topic:

"The present analyses are an extension of our earlier results on the multifractal features of sentence length variation in works of world literature. After all, what is sentence length? It is nothing more than the distance to the next specific punctuation mark— the full stop. So now we have taken all punctuation marks under a statistical magnifying glass, and we have also looked at what happens to punctuation during translation," 

The attention of the Cracow researchers was primarily drawn to the statistical distribution of the distance between consecutive punctuation marks. It soon became evident that in all the languages studied, it was best described by one of the precisely defined variants of the Weibull distribution.

The Weibull distribution is usually used to describe survival phenomena (e.g. population as a function of age), but also various physical processes, such as increasing fatigue of materials.

Further findings:

The language characterized by the lowest propensity to use punctuation is English, with Spanish not far behind; Slavic languages proved to be the most punctuation-dependent. German proved to be the exception. Its hazard function is the only one that intersects most of the curves constructed for the other languages. German punctuation thus seems to combine the punctuation features of many languages, making it a kind of Esperanto punctuation. Also, the language most faithfully transforming punctuation from the original language to the target language turned out to be German.

And here is just a great explanation of the mathematical constraints on language:

"Creating a sentence by adding one word after another while ensuring that the message is clear and unambiguous is a bit like tightening the string of a bow: it is easy at first, but becomes more demanding with each passing moment. If there are no ordering elements in the text (and this is the role of punctuation), the difficulty of interpretation increases as the string of words lengthens. A bow that is too tight can break, and a sentence that is too long can become unintelligible. Therefore, the author is faced with the necessity of 'freeing the arrow', i.e. closing a passage of text with some sort of punctuation mark. This observation applies to all the languages analyzed, so we are dealing with what could be called a linguistic law," states Dr. Tomasz Stanisz (IFJ PAN), first author of the article in question.

Also: The Journal of Chaos, Solitons and Fractals 

via The Henryk Niewodniczanski Institute of Nuclear Physics Polish Academy of Sciences: Tomasz Stanisz et al, Universal versus system-specific features of punctuation usage patterns in major Western languages, Chaos, Solitons & Fractals (2023). DOI: 10.1016/j.chaos.2023.113183

Image credit: AI Art - Ouroboros - 2023

Harnessing chaos - Simulation experiment demonstrates way to mitigate extreme weather events
Jun 2023, phys.org

Is this even real? This is the most sci fi shit I've ever heard. Diabolical, and if it wasn't from RIKEN, I wouldn't even post it; it was also part of a national competition in Japan:

RIKEN scientists have demonstrated a way to make small tweaks in weather systems as a means to prevent, or at least reduce, the severity of extreme weather events such as torrential rain. They did this by taking advantage of the chaos that is inherent to such systems. Through this work they hope to develop ways to prevent extreme weather events, which have become more common in recent years.

His group took on this challenge as part of the Japanese government's moonshot-millennia program, and in previously published work, they described the possibility of controlling weather by initiating small changes in it as it forms. At that time, they used the simple Lorenz 63 weather model, which only has a few variables, and showed that it would be possible to induce small perturbations in the system to keep it on one side of a so-called "butterfly pattern." (I don't know why they're not calling it the butterfly effect)

Their new study published in Nonlinear Processes in Geophysics goes beyond the simple model. In it, the team adopted the Lorenz 96 model. Essentially, it sets a weather variable for 40 points along a line of latitude around the Earth, and looks at how each of these points changes as it interacts with neighboring points throughout the year. Approximately once or twice a year, the points show large variations, which correspond to extreme weather events. As part of a control simulation experiment, the members of the team were able to eliminate the extreme events by making small tweaks in a 100-year run of the model.

The control simulation experiment essentially took advantage of the chaotic nature of the system; small perturbations—which might for example involve making centimeter/second changes in wind speed to prevent a typhoon with winds that are many times more powerful—done strategically ahead of time could prevent the system from entering an undesired area, meaning that they could stop extreme events from happening.

via RIKEN: Qiwen Sun et al, Control simulation experiments of extreme events with the Lorenz-96 model, Nonlinear Processes in Geophysics (2023). DOI: 10.5194/npg-30-117-2023

Tuesday, January 2, 2024

New "Fingers of Science" to Start 2024


To start off the new year of 2024, here is a series of pictures of scientists holding tiny things in their fingers close up to the camera, just like you asked.

Above image: Piezoelectric sensor - University of Houston - 2023


Optical coherence tomography uses light waves to take cross sectional images - R Wilson at NIST - Apr 2023


Graphene implant on tattoo paper - Ning Liu at University of Texas at Austin - 2023


Implantable nanofluidic device to deliver immunotherapy into a pancreatic tumor - Houston Methodist Research Institute - 2023


Spin-coated perovskite solar cells - Zhu Zonglong at City University of Hong Kong - 2023


Smart Bandage - University of Glasgow - 2023


Tunable superconducting diode - University of Minnesota Twin Cities - 2023


Perovskite silicon tandem solar cell - Johannes Beckedahl, Lea Zimmerman, HZB - 2023


Flexible perovskite solar cell - Stepan Demchyshyn - 2023


Nanoparticle sensors - Macquarie University - 2023


Remaining Denisova 11 Denny bone fragment - Katerina Douka, Tom Higham, Institute for Basic Science - 2023


Prototype solid-state stacked battery - Empa - Swiss National Science Foundation - 2023


Miniature human heart on a microchip - Tissue Dynamics - 2023


Shapeshifting robot CLARI - Casey Cass CU Boulder - 2023


14nm analog AI chip - Ryan Lavine for IBM - 2023


Small robotic devices microflier - Mark Stone for University of Washington - 2023


Screen-printed, flexible sensors attached to earbuds - Erik Jepsen University of California San Diego - 2023


MilliMobile the self-driving robot powered by light or radio waves - Mark Stone University of Washington - 2023


Thermal magIC thermometry camera - Jennifer Lauren Lee at NIST - 2023


Wearable sensor for glucose monitoring - Kate Myers at Penn State - 2023


Faux Fingers - AI Art via Lexica - Hand holding a old cassette tape - 2023


Microneedle skin patch - University of Bath - 2023


Inverted perovskite solar cell with hole-selective contacts - EPFL Felix T. Eickemeyer  - 2023


Lead-halide perovskite solar cells - Pan Xu of Hefei Institutes of Physical Science of Chinese Academy of Sciences - 2023


Flexible X-ray detector - Dr Nanayakkara at University of Surrey - 2023

Old Musings on Fingers of Science circa 2022:
I wish I could articulate my fascination with these pictures, something about the essence of discovery, the seed of wonder? It's close up so it's under enhanced scrutiny by the viewer. Maybe it's the difference between this little thing being a big deal, and yet being so tiny. What's the difference between a photograph of the Large Hadron Collider and a photograph of this "artificial fairy" above? You can hold it in your hands, and not just your hands, in between your fingers. And also it's being held, controlled, protected, by the very hands that made it. Maybe just because it's the scientists fingers, not their face or their lab coat or their million dollar petaflopping supercomputers, but their fingers. The physical products of scientific endeavor, the pinnacle of human technology, being held by the most simple piece of "technology" on this Earth -- the human hand.  

Thursday, December 21, 2023

Climate Things Now


Microorganisms are key to storing carbon in soils, shows new study
May 2023, phys.org

What's the impact ratio of fossil fuel carbon vs soil carbon?

Microbial carbon use efficiency is at least four times more influential than other biological or environmental factors when it comes to global soil carbon storage and distribution. The study's result has implications for improving soil health and mitigating climate change.

Soils serve as crucial carbon sinks, storing more carbon than any other terrestrial ecosystem and three times more than the atmosphere. However, the processes involved in soil carbon storage have not been well understood. 

And the paranoid person should readily come to the suspicion that this is not a coincidence, Big Agra etc.

via Max Plank Society for Biogeochemistry in Jena: Feng Tao et al, Microbial carbon use efficiency promotes global soil carbon storage, Nature (2023). DOI: 10.1038/s41586-023-06042-3

Image credit: AI Art - A Collection of Teaching Resources - 2023

Also: Improving soil could keep world within 1.5C heating target, research suggests
Apr 2023, The Guardian
It has long been known to be one of Earth’s biggest stores of carbon, but until now it has not been possible to examine in detail how much carbon soils in particular areas are locking up and how much they are emitting.

  

AI Art - Magnetar in Space - 2023

This is where things get interesting.

Recent, rapid ocean warming ahead of El Niño alarms scientists
Apr 25 2023, BBC News

Note that this article comes out only months after the IPCC 6.

"In March, sea surface temperatures off the east coast of North America were as much as 13.8C (24.8F) higher than the 1981-2011 average."

Because that sounds really high. And it makes you think, how can we be that wrong? We've been studying this for a long time, devote so many resources to this, use the world's most powerful computers to run these models, and we're still ----this---- wrong about what's happening. I imagine that anyone paying close enough attention to this sees nothing but the all-out apocalypse blinding their vision of the future. 

"Scientists don't fully understand why this has happened."

The IPCC 6 is almost 4,000 pages long and based on 14,000 scientific papers, and we can't figure out why the ocean is 25F hotter than it's supposed to be, based on the same models that went into that report? You think that would be big news. Yet:

"An important new study, published last week with little fanfare, highlights a worrying development."

I saw this mentioned first on BBC. Then I saw it in Wired magazine within the same week. That was it. Until one month later, it resurfaces, this time in the Wall Street Journal. Maybe that's because it can be used to support the idea that we have no idea what we're doing, and maybe we can stop all this panic and keep the motor running another 100 years. You might expect to hear that from a newspaper owned by the same guy who also owns a global logistics company which relies on exploiting the intimate relationships developed in cooperation with Big Fossil.

Then again, maybe it's really no big deal, right? (Right?)

AI Art - Quarks - 2023

Reduced emissions during the pandemic led to increased climate warming, reveals study
May 2023, phys.org

The global material experiment -- "It is well known that emissions of sulfur and nitrogen oxides and other air pollutants lead to the formation of aerosols (particles) in the air that can offset, or mask, the full climate warming caused by greenhouse gases such as carbon dioxide and methane. But there has been a lack of knowledge about this "masking effect." In order to determine the size, large-scale experiments involving huge regions would be required—this is infeasible.

The COVID pandemic became such a "natural" experiment."

"Through this large-scale geophysical experiment, we were able to demonstrate that while the sky became bluer and the air cleaner, climate warming increased when these cooling air particles were removed," says Professor Örjan Gustafsson at Stockholm University, who is responsible for the measurements in the Maldives and who led the study.

The results show that a complete phasing out of fossil fuel combustion in favor of renewable energy sources with zero emissions could result in rapid "unmasking" of aerosols, while greenhouse gases linger.

via Stockholm University: H. R. C. R. Nair et al, Aerosol demasking enhances climate warming over South Asia, npj Climate and Atmospheric Science (2023). DOI: 10.1038/s41612-023-00367-6


Ocean temperatures are off the charts, and El Niño is only partly to blame
Jun 2023, phys.org

Had to "increase the upper bound on the y-axis," he said.

When someone is measuring a global emergent disaster, that is absolutely not what you want to hear them say.

But this is where it gets good:

"major change in regulations around the sulfur content of shipping fuels could also be behind the warming spike, according to both Swain and Jacobson.

The regulations, ordered by the International Maritime Organization in 2020, reduced the upper limit of sulfur in fuels from 3.5% to 0.5% in an effort to achieve cleaner air in ports and coastal areas.

However, the change may have had an unexpected consequence because sulfate aerosols can reflect sunlight away from the earth, "effectively dimming the planet's surface," Jacobson wrote in a post on his website.

"By cleaning up shipping fuels, massive regions of the world's oceans that were protected from heating by shipping sulfate aerosols are now experiencing rapid warming," he said, including many of the main shipping routes where the warming is happening. -Eliot Jacobson, retired mathematics professor who created the graph using data from NOAA's Pacific Marine Environmental Laboratory ... "

Aside from the Tonga eruption, the global pandemic, the arriving El Niño, this comes up as one possibility for the sudden rise in sea temperatures -- how crazy would it be if the very sulfur that we are trying to keep out of the air because it gets in the blood and causes heart disease, has been masking a huge temperature rise that might now cause heart attacks across the planet but this time from heat-related events. 

Then again, Terminal Shock and Ministry for the Future already wrote that book, if you're interested in hearing what it might be like to intentionally put sulfur back into the air... 


Climate change -- Sudden heat increase in seas around UK and Ireland
Jun 2023, BBC News

Same alarms as the above, but this time from the European Space Agency (ESA). They mention that the North Atlantic is seeing the most rise in temperatures, and also talk about the sulfur emissions:

Regulations reducing the sulphur content of fuel burned by ships were brought in by the International Maritime Organisation (IMO) in 2020.

This significantly reduces the amount of aerosol particles released into the atmosphere, the IMO says.

But aerosols that pollute the air can also help reflect heat back into space, so removing them may have caused more heat to enter the waters.
AI Art - Un Pequeno Dispositivo Cuantico - 2023

Effect of volcanic eruptions significantly underestimated in climate projections, study shows
Jun 2023, phys.org

Researchers have found that the cooling effect that volcanic eruptions have on Earth's surface temperature is likely underestimated by a factor of two, and potentially as much as a factor of four, in standard climate projections.

Compared with the greenhouse gases emitted by human activity, the effect that volcanoes have on the global climate is relatively minor, but it's important that we include them in climate models, in order to accurately assess temperature changes in future.

via University of Cambridge: Man Mei Chim et al, Climate Projections Very Likely Underestimate Future Volcanic Forcing and Its Climatic Effects, Geophysical Research Letters (2023). DOI: 10.1029/2023GL103743


Climate change: Shipping agrees net-zero goal but critics chide deal
Jun 2023, BBC News

The global shipping industry has agreed to reduce planet warming gases to net-zero "by or around 2050", but critics say the deal is fatally flawed. Ships produce around 3% of global CO2 but countries will now have to reduce this as close as possible to zero by the middle of the century.

Small island states have welcomed the plan but green groups are furious. They believe the strategy is toothless and will do little to limit rising temperatures. China, Brazil, Saudi Arabia and others the new strategy that will see "indicative checkpoints" rather than hard targets

 

AI Art - A Virus Drawn by DaVinci - 2023


Let's switch to something different for a moment:

Potential financial losses from a renewable energy transition are concentrated among the wealthy, study finds
Jun 2023, phys.org

Pretty much explains everything --

Their results found that, in the United States, two-thirds of the financial losses from lost fossil fuel assets would affect the top 10% of wealth holders, with half of that affecting the top 1%. Because the top 1% tend to have a diverse portfolio of investments, any losses from fossil fuel assets would make up less than 1% of this group's net wealth. When the researchers repeated this analysis for the United Kingdom and continental European countries, they found similar results.

"Investing in a stranded asset is like buying a rotten apple," says Chancel. "In this case, the apple is rotten because of climate change. Who owns these rotten apples? We find that the richest 10% of the population owns the vast majority of these assets."

via Political Economy Research Institute and Department of Economics, University of Massachusetts Amherst and Center for Research on Social Inequalities, Sciences Po, Paris : Gregor Semieniuk, Potential pension fund losses should not deter high-income countries from bold climate action, Joule (2023). DOI: 10.1016/j.joule.2023.05.023.


Roadside hedges can reduce harmful ultrafine particle pollution around schools
Sep 2023, phys.org

(Why did we need science to tell us this)

"Western red cedar does a great job in 'capturing ' particulate pollution because it has abundant, fine, evergreen leaves into which airborne particles bump and then settle from the roadside air," said study co-author Professor Barbara Maher from the University of Lancaster who led the previous research. *I believe we call these trees Arborvitae here in the Northeast?

The researchers applied a new type of pollution analysis, using magnetism to study particles which originate from vehicle exhaust and the wearing of brake pads and tires, and are then trapped by a hedge separating a major 6-lane road from a primary school in Manchester, UK. They found that the hedge was especially successful in removing ultrafine particle pollution, which can be more damaging to health.

Testing with magnetism allowed them to distinguish local traffic pollution from other sources of air pollution.

In the school playground, 30 meters from the road, they measured a 78% decrease in PM10 relative to roadside air.

They noticed that this removal was even more efficient for ultrafine PM2.5 particles. "What was remarkable was just how efficiently the tredge hoovered up the very finest particles," said senior author Professor Richard Harrison, also from Cambridge's Department of Earth Sciences. They measured an 80% reduction in the ultrafine particles just behind the tredge.

via University of Cambridge and Lancaster University: H.A. Sheikh et al, Efficacy of green infrastructure in reducing exposure to local, traffic-related sources of airborne particulate matter (PM), Science of The Total Environment (2023). DOI: 10.1016/j.scitotenv.2023.166598


Green growth loses favor with climate policy scientists
Sep 2023, phys.org

A total of 86.1% of the researchers from the European Union for instance expressed very high levels of skepticism about green growth, while North American researchers were less likely to hold degrowth positions compared to those from other OECD countries. In contrast, more than half of the researchers from non-OECD countries, most importantly BRICS (Brazil, Russia, India, China and South Africa), expressed views aligned with a green growth position.

"We also found that climate policy researchers with a degrowth position tend to support direct regulation (standards, quotas, bans) while green growth proponents support innovation subsidies."

Truly eye opening, every piece of this makes sense, like how the US (more infiltrated by industry and money) is for green growth more than EU, how economists and environmentalists (latter a direct target of academia money influence on climate) and even how the innovators are for green growth, and they are the people who stand to make money off it, as usual....

Post-Growth (either degrowth or agrowth) -- prioritize sustainability, social justice, and human well-being, even if this means a reduction in material consumption and economic activity.

via ESCP Business School (France), the Graduate School of Economics and Management of the Ural Federal University (Russia), the University of Málaga (Spain), and the Institute of Environmental Science and Technology of the Universitat Autònoma de Barcelona: Lewis C. King et al, Shades of green growth scepticism among climate policy researchers, Nature Sustainability (2023). DOI: 10.1038/s41893-023-01198-2.

AI Art - Bosons - 2023

New study finds that the Gulf Stream is warming and shifting closer to shore
Oct 2023, phys.org

The Gulf Stream has warmed faster than the global ocean as a whole and has shifted towards the coast.

"The warming we see near the Gulf Stream is due to two combined effects. One is that the ocean is absorbing excess heat from the atmosphere as the climate warms," said Todd. "The second is that the Gulf Stream itself is gradually shifting towards the coast."

They identified these trends using observational data from Spray autonomous underwater gliders and from the Argo Program, which is an array of about 4,000 autonomous profiling floats that drift with ocean currents and move up and down between the surface and about 2,000 meters (6,560 feet) in depth, collecting data as they rise. Argo is an international program that has been operating since 1999. WHOI is one of the original Argo institutions and maintains about 10% of the array.

via Woods Hole Oceanographic Institution: Robert E. Todd et al, Warming and lateral shift of the Gulf Stream from in situ observations since 2001, Nature Climate Change (2023). DOI: 10.1038/s41558-023-01835-w


Carbon emissions threaten 1.5C climate threshold sooner than thought
Oct 2023, BBC News

They're not saying it but they are saying it --

Earlier this year, the Intergovernmental Panel on Climate Change, the UN's key advisory body, projected that the world could only emit another 500bn tonnes of carbon and have a 50% chance of keeping warming under the 1.5C figure.

As the current annual level of emissions is around 40bn tonnes, the IPCC projected that the threshold would be crossed permanently by the middle of the next decade. But this new analysis suggests it will be much sooner than that.

The researchers ... also re-examined the role of other, non-carbon factors that impact warming. One of the most critical are sooty particles called aerosols, which mainly arise from the burning of fossil fuels. They contribute heavily to air pollution but have an unexpected benefit for the climate because they help cool the atmosphere by reflecting sunlight back into space.

The new research paper finds that these aerosols have in fact a far higher cooling impact than previously thought. 

Neil Stephenson and Kim Stanley Robinson, literally wrote this future like yesterday (2020).


Shoot I can't keep up; this is unfolding in real time:
Pioneering scientist says global warming is accelerating. Some experts call his claims overheated
Nov 2023, phys.org

The Godfather of Global Warming -- former NASA top scientist James Hansen, prominent protester against the use of fossil fuels, alerted much of the United States to the harms of climate change in dramatic congressional testimony in 1988

Hansen argues there is more sun energy in the atmosphere, and less of the particles that can reflect it back into space thanks to efforts to cut pollution. The loss of those particles means there's less of the cooling effect that they can have. 

Particles.

via James Hanson, Godfather of Global Warming: James Hansen et al, Global warming in the pipeline, Oxford Open Climate Change (2023). DOI: 10.1093/oxfclm/kgad008

Hold On I Have To Go Plug In My Skin


Sensors built into wearable patches could signal the future
Feb 2023, phys.org

Acoustic transmitter and receiver without any additional antenna.

via Northumbria University: Qian Zhang et al, Multifunctional and Wearable Patches Based on Flexible Piezoelectric Acoustics for Integrated Sensing, Localization, and Underwater Communication, Advanced Functional Materials (2022). DOI: 10.1002/adfm.202209667

Image credit: AI Art - A Cup of Coffee Connected to a Man's Head - 2023

Breakthrough for sweat analysis: 3D-printed wearable sensor
May 2023, phys.org

It's called the "sweatainer", named after the "vacutainer" used in blood sampling. 

via University of Hawaii at Manoa: Chung-Han Wu et al, Skin-interfaced microfluidic systems with spatially engineered 3D fluidics for sweat capture and analysis, Science Advances (2023). DOI: 10.1126/sciadv.adg4272.


Soft 'e-skin' generates nerve-like impulses that talk to the brain
May 2023, phys.org
"Monolithic e-skin" - soft integrated circuits that convert sensed pressure or temperature to electrical signals similar to the nerve impulses to communicate with the brain, but with low enough operating voltage to be used safely on the human body, and to be one day directed to implanted wireless communication chips in the peripheral nerve to allow amputees to control prosthetic limbs

25-50 microns thick, like a sheet of paper, or the outer layer of human skin, and runs on 5 volts.
via Stanford: Weichen Wang et al, Neuromorphic sensorimotor loop embodied by monolithically integrated, low-voltage, soft e-skin, Science (2023). DOI: 10.1126/science.ade0086

AI Art - Head Made of Recursive Speakers 3 - 2022

AI powers second-skin-like wearable tech
May 2023, phys.org

Ultra-thin wearable patch worn on the neck has three layers to measure speech, neck movement, touch, breathing and heart rates

via Monash University: Shu Gong et al, Hierarchically resistive skins as specific and multimetric on-throat wearable biosensors, Nature Nanotechnology (2023). DOI: 10.1038/s41565-023-01383-6


Wearable textile captures energy from body movement to power devices
Jun 2023, phys.org

"Triboelectric wearable textile that can convert body movement into useable electricity and even store that energy, using graphene oxide fiber for use in a coaxial fiber-shaped supercapacitor."

This used to sound cool, but it's funny how things change, and under the shadow of surveillance capitalism this now sounds like an absolute nightmare:

"In the future, if advanced fabrics can be developed, then perhaps wearable electronic devices integrated into shirts, pants, underwear and hats will be able to track indicators of frailty to assess risk of age-related disease, monitor cortisol levels to track stress levels, or even detect pathogens as part of a global pandemic monitoring network."

via Tsinghua University: Feifan Sheng et al, Wearable energy harvesting-storage hybrid textiles as on-body self-charging power systems, Nano Research Energy (2023). DOI: 10.26599/NRE.2023.9120079


Making headway in precision therapeutics with novel fully organic bioelectronic device
Jul 2023, phys.org 

The first stand-alone, conformable, fully organic bioelectronic device that can not only acquire and transmit neurophysiologic brain signals, but can also provide power for device operation. Uses sub-micron IGT (internal-ion-gated organic electrochemical transistor) architecture.

via Columbia University School of Engineering and Applied Science: Claudia Cea et al, Integrated internal ion-gated organic electrochemical transistors for stand-alone conformable bioelectronics, Nature Materials (2023). DOI: 10.1038/s41563-023-01599-w

AI Art - Head Made of Recursive Speakers 4 - 2022

New wearable sensor sets record for solar power efficiency
Jul 2023, phys.org

Biosensors capable of reading out levels of salts, sugars, uric acid, amino acids, vitamins, and C-reactive proteins, and is powered with a flexible perovskite solar cell (FPSC) which is particularly well suited to indoor lighting emission spectrum. (Also mentions that it's assembled in an origami-like fashion).

via Heritage Medical Research Institute, Johannes Kepler University Linz in Austria, and California Institute of Technology: Min, J. et al. An autonomous wearable biosensor powered by a perovskite solar cell. Nature Electronics (2023). DOI: 10.1038/s41928-023-00996-y


Screen-printed, flexible sensors allow earbuds to record brain activity and exercise levels
Sep 2023, phys.org

Flexible sensors screen printed onto earbuds to record the electrical activity of the brain as well as levels of lactate in the body.

via University of California - San Diego: In-ear integrated sensor array for the continuous monitoring of brain activity and of lactate in sweat, Nature Biomedical Engineering (2023). DOI: 10.1038/s41551-023-01095-1


New wearable sensor makes continuous analysis of sweat possible, researchers say
Sep 2023, phys.org

Whereas low biomarker concentration levels in sweat and variability of other factors such as pH, salinity and temperature have pushed previous sweat biosensors past the limits of their detection and accuracy, this laser-modified graphene nanocomposite material can detect specific glucose levels in sweat for three weeks while simultaneously monitoring body temperature and pH levels

via Penn State: Farnaz Lorestani et al, A Highly Sensitive and Long‐Term Stable Wearable Patch for Continuous Analysis of Biomarkers in Sweat, Advanced Functional Materials (2023). DOI: 10.1002/adfm.202306117