Showing posts with label matter compiler. Show all posts
Showing posts with label matter compiler. Show all posts

Sunday, December 14, 2025

Compubiquity and Alternative Intelligence


You think you're taking crazy pills, but it's just science doing its thing. Reality is not partial to computers; computing on the other hand...

Researchers build next-gen swarm robots using simple linked particles
May 2025, phys.org

The research team created a new type of robot inspired by this phenomenon, known as "emergent collective behavior." Their solution, called the link-bot, connects small self-moving particles in a V-shaped chain formation that naturally gives rise to coordinated, lifelike movement - without any embedded intelligence.

via Seoul National University: Kyungmin Son et al, Emergent functional dynamics of link-bots, Science Advances (2025). DOI: 10.1126/sciadv.adu8326.



Synthetic molecules encode and decode 11-character password using electrical signals
May 2025, phys.org

"This is the first attempt to write information in a building block of plastic that can then be read back using electrical signals"

They designed molecules that contain electrochemical information, a method that allows messages to be decoded using electrical signals.

"It opens exciting prospects for interfacing chemical encoding with modern electronic systems and devices."

"polymer-based data storage"

via University of Texas at Austin: Electrochemical Sequencing of Sequence-Defined Ferrocene-Containing Oligourethanes, Chem (2025). DOI: 10.1016/j.chempr.2025.102571


Low-power 'microwave brain' on a chip computes on both ultrafast data and wireless signals
Aug 2025, phys.org

Unlike traditional neural networks that rely on digital operations and step-by-step instructions timed by a clock, this network uses analog, nonlinear behavior in the microwave regime, allowing it to handle data streams in the tens of gigahertz - much faster than most digital chips.

via Cornell University: An integrated microwave neural network for broadband computation and communication, Nature Electronics (2025). DOI: 10.1038/s41928-025-01422-1


'Singing' electrons synchronize in Kagome crystals, revealing geometry-driven quantum coherence
Oct 2025, phys.org

After sculpting micrometer crystalline pillars into Kagome metal CsV₃Sb₅, then applying magnetic fields, the electrons remained coherent far beyond what single-particle physics would allow.

Even more surprisingly, the oscillations depended on the crystal's geometry.

via Max Planck Institute for the Structure and Dynamics of Matter: Chunyu Guo et al, Many-body interference in kagome crystals, Nature (2025). DOI: 10.1038/s41586-025-09659-8


Programming robots with rubber bands
Oct 2025, phys.org

Here's another way of saying it:

There's another way to design robots: Programming intended functions directly into a robot's physical structure, allowing the robot to react to its surroundings without the need for extensive on-board electronics.

Or this:

"This is kind of an extreme version of 'form follows function,' where functionalities like memory, adaptability and intelligence can be enabled by geometry and material parameters."

via Harvard: Leon M. Kamp et al, Reprogrammable sequencing for physically intelligent underactuated robots, Proceedings of the National Academy of Sciences (2025). DOI: 10.1073/pnas.2508310122