Free Quiz
Write for Us
Learn Artificial Intelligence and Machine Learning
  • Artificial Intelligence
  • Data Science
    • Language R
    • Deep Learning
    • Tableau
  • Machine Learning
  • Python
  • Blockchain
  • Crypto
  • Big Data
  • NFT
  • Technology
  • Interview Questions
  • Others
    • News
    • Startups
    • Books
  • Artificial Intelligence
  • Data Science
    • Language R
    • Deep Learning
    • Tableau
  • Machine Learning
  • Python
  • Blockchain
  • Crypto
  • Big Data
  • NFT
  • Technology
  • Interview Questions
  • Others
    • News
    • Startups
    • Books
Learn Artificial Intelligence and Machine Learning
No Result
View All Result

Home » Near Absolute Zero, This Transistor Starts Acting Like a Brain Cell

Near Absolute Zero, This Transistor Starts Acting Like a Brain Cell

Tarun Khanna by Tarun Khanna
June 23, 2026
in Artificial Intelligence, Technology
Reading Time: 2 mins read
0
Near Absolute Zero, This Transistor Starts Acting Like a Brain Cell

Image Credit: https://scitechdaily.com/

Share on FacebookShare on TwitterShare on LinkedInShare on WhatsApp

A single transistor that behaves like a brain cell in the deep freeze ought to assist the next generation of quantum computer and space exploration systems.

Researchers at the University of Hong Kong (HKU) have created a new type of brain-inspired electronic hardware that can perform at temperatures close to absolute zero. The breakthrough could support address one of the biggest demanding situations going through quantum computing while also beginning new possibilities for future deep-space missions.

The work was performed by scientists from HKU’s Department of Electrical and Computer Engineering inside the Faculty of Engineering and the Centre for Advanced Semiconductors and Integrated Circuits (CASIC). Their latest developed programmable neuromorphic platform functions in significantly cold environments and could give a practical way to enhance the scalability of quantum computers.

Also Read:

NVIDIA Expands Japan’s Physical AI Ecosystem With Cosmos 3 Edge

Musk’s Memphis AI Data Centers Fuel a National Backlash

Researchers broaden ‘SyMerge’ technology maximizing AI model synergy

AI-powered election forecasts reveal hidden preferences inside language models

Brain-Inspired Computing at Near Absolute Zero

The research group, managed by Professor Yuhao Zhang and PhD scholar Xin Yang, discovered a new technique for developing and controlling negative differential resistance (NDR) in industry-standard Silicon Carbide (SiC) MOSFETs.

Using this technique, they proven for the first time that a single transistor can reproduce the energy-efficient “spiking” activity seen in biological neurons at temperatures as low as 10 mK.

This breakthrough is considerable due to the quantum computers operate beneath extraordinarily cold conditions. Their qubits are extremely sensitive and must be kept at millikelvin temperatures. Moreover, the electronic systems used to control those qubits commonly consume substantial power and generate heat.

As a result, today’s silicon-based controllers need to be positioned farther faraway from the qubits, developing a complicated web of wiring that limits system performance and makes it more tough to form large quantum computers.

“Our work releases a hardware platform that may be incorporate alongside quantum processors,” stated Professor Zhang. “By using of the unique carrier dynamics in silicon carbide, we can form circuits that are thousands of times more energy-efficient than conventional electronics, substantially decreasing the thermal load on cryogenic systems.”

Silicon Carbide Reveals Unique Cryogenic Behavior

The researchers found that SiC MOSFETs behave otherwise while cooled below 2K. Under those conditions, the gadgets show off a robust “S-shape” NDR effect driven by electron-donor effect ionization (EDII).

Unlike other technologies that rely upon heat-related processes, this impact originates from the material’s own atomic structure. As per the team, that makes the behavior notably stable and continuously reproducible across different production batches.

“This is a strong and scalable approach,” stated Mr. Yang. “Because SiC is already used globally in electric vehicles and power grids, we can leverage current industrial foundries to produce these cryogenic chips on 300-mm wafers.”

Toward Larger Quantum Systems and Deep-Space Missions

The study also showed that those artificial neurons can be “cascaded” into larger networks. This capability could permit more advanced local data processing in cryogenic environments, improving functions which include quantum error correction and real-time quantum control.

The potential applications increase beyond quantum computing. Because the circuits can operate reliably in extraordinarily cold conditions, they may also be well suited for deep-space exploration. Future spacecraft and scientific instruments must frequently function in environments as cold as the lunar surface or the distant regions of our solar system.

ShareTweetShareSend
Previous Post

Billionaire Ambani require AI in each call, app, and domestic

Next Post

OpenAI release new initiative to help discover and patch open source bugs

Tarun Khanna

Tarun Khanna

Founder DeepTech Bytes - Data Scientist | Author | IT Consultant
Tarun Khanna is a versatile and accomplished Data Scientist, with expertise in IT Consultancy as well as Specialization in Software Development and Digital Marketing Solutions.

Related Posts

Fujitsu and leading Japanese robotics companies to use Nvidia technology in ‘physical AI’
Artificial Intelligence

Fujitsu and leading Japanese robotics companies to use Nvidia technology in ‘physical AI’

July 16, 2026
Meta Employees Allege AI Systems Discriminated During Layoffs
Artificial Intelligence

Meta Employees Allege AI Systems Discriminated During Layoffs

July 16, 2026
SpaceX’s near-term AI payoff seen anchored to Earth, not outer space
Artificial Intelligence

SpaceX’s near-term AI payoff seen anchored to Earth, not outer space

July 13, 2026
AI Safety And Security Are No Longer Optional Conference Topics
Artificial Intelligence

AI Safety And Security Are No Longer Optional Conference Topics

July 10, 2026
Next Post
OpenAI release new initiative to help discover and patch open source bugs

OpenAI release new initiative to help discover and patch open source bugs

Leave a Reply Cancel reply

Your email address will not be published. Required fields are marked *

+ 2 = 12

TRENDING

7 Things to track in a Machine Learning Model-Complete Checklist

machine learning
by Tarun Khanna
March 12, 2021
0
ShareTweetShareSend

Elon Musk’s SpaceX officially obtains Elon Musk’s xAI, with plan to built data facilities in space

Elon Musk’s SpaceX officially obtains Elon Musk’s xAI, with plan to built data facilities in space

Photo Credit: https://techcrunch.com/

by Tarun Khanna
February 3, 2026
0
ShareTweetShareSend

Did Scientists Overestimate AI’s Ability To Think Like Humans?

Did Scientists Overestimate AI’s Ability To Think Like Humans?

Photo Credit: https://scitechdaily.com/

by Tarun Khanna
March 25, 2026
0
ShareTweetShareSend

Meta discloses AI that thinks and sees the world like humans

Meta discloses AI that thinks and sees the world like humans

Photo Credit: https://www.indiatoday.in/

by Tarun Khanna
June 12, 2025
0
ShareTweetShareSend

Bitcoin Price Prediction: Bitcoin Falls to $79.6k as US-Iran Escalation Dents Risk Set for 6th Weekly Gain

Bitcoin Price Prediction: Bitcoin Falls to $79.6k as US-Iran Escalation Dents Risk Set for 6th Weekly Gain

Image Credit: https://cryptonews.com/

by Tarun Khanna
May 12, 2026
0
ShareTweetShareSend

Game-Changing 3-D Chip Uses Light to Supercharge AI

Game-Changing 3D Chip Uses Light to Supercharge AI

Photo Credit: https://scitechdaily.com/

by Tarun Khanna
March 27, 2025
0
ShareTweetShareSend

DeepTech Bytes

Deep Tech Bytes is a global standard digital zine that brings multiple facets of deep technology including Artificial Intelligence (AI), Machine Learning (ML), Data Science, Blockchain, Robotics,Python, Big Data, Deep Learning and more.
Deep Tech Bytes on Google News

Quick Links

  • Home
  • Affiliate Programs
  • About Us
  • Write For Us
  • Submit Startup Story
  • Advertise With Us
  • Terms of Service
  • Disclaimer
  • Cookies Policy
  • Privacy Policy
  • DMCA
  • Contact Us

Topics

  • Artificial Intelligence
  • Data Science
  • Python
  • Machine Learning
  • Deep Learning
  • Big Data
  • Blockchain
  • Tableau
  • Cryptocurrency
  • NFT
  • Technology
  • News
  • Startups
  • Books
  • Interview Questions

Connect

For PR Agencies & Content Writers:

connect@deeptechbytes.com

Facebook Twitter Linkedin Instagram
Listen on Apple Podcasts
Listen on Google Podcasts
Listen on Google Podcasts
Listen on Google Podcasts
DMCA.com Protection Status

© 2024 Designed by AK Network Solutions

Welcome Back!

Login to your account below

Forgotten Password?

Retrieve your password

Please enter your username or email address to reset your password.

Log In
No Result
View All Result
  • Artificial Intelligence
  • Data Science
    • Language R
    • Deep Learning
    • Tableau
  • Machine Learning
  • Python
  • Blockchain
  • Crypto
  • Big Data
  • NFT
  • Technology
  • Interview Questions
  • Others
    • News
    • Startups
    • Books

© 2023. Designed by AK Network Solutions