Solar Energy News  
STELLAR CHEMISTRY
Sensor with 100,000 times higher sensitivity could bolster thermal imaging
by Staff Writers
Research Triangle Park NC (SPX) Oct 05, 2020

The microwave bolometer developed under this project is capable of detecting a single microwave photon, the smallest amount of energy in nature

Army-funded research developed a new microwave radiation sensor with 100,000 times higher sensitivity than currently available commercial sensors. Researchers said better detection of microwave radiation will enable improved thermal imaging, electronic warfare, radio communications and radar.

Researchers published their study in the peer-reviewed journal Nature. The team includes scientists from Harvard University, The Institute of Photonic Sciences, Massachusetts Institute of Technology, Pohang University of Science and Technology, and Raytheon BBN Technologies. The Army, in part, funded the work to fabricate this bolometer by exploiting the giant thermal response of graphene to microwave radiation.

"The microwave bolometer developed under this project is so sensitive that it is capable of detecting a single microwave photon, which is the smallest amount of energy in nature," said Dr. Joe Qiu, program manager for solid-state electronics and electromagnetics, Army Research Office, an element of the U.S. Army Combat Capabilities Development Command's Army Research Laboratory.

"This technology will potentially enable new capabilities for applications such as quantum sensing and radar, and ensure the U.S. Army maintains spectral dominance in the foreseeable future."

The graphene bolometer sensor detects electromagnetic radiation by measuring the temperature rise as the photons are absorbed into the sensor. Graphene is a two dimensional, one-atom layer thick material. The researchers achieved a high bolometer sensitivity by incorporating graphene in the microwave antenna.

A key innovation in this advancement is to measure the temperature rise by superconducting Josephson junction while maintaining a high microwave radiation coupling into the graphene through an antenna, researchers said. The coupling efficiency is essential in a high sensitivity detection because "every precious photon counts."

A Josephson junction is a quantum mechanical device which is made of two superconducting electrodes separated by a barrier (thin insulating tunnel barrier, normal metal, semiconductor, ferromagnet, etc.)

In addition to being thin, the electrons in graphene are also in a very special band structure in which the valence and conduction bands meet at only one point, known as Dirac point.

"The density of states vanishes there so that when the electrons receive the photon energy, the temperature rise is high while the heat leakage is small," said Dr. Kin Chung Fong, Raytheon BBN Technologies.

With increased sensitivity of bolometer detectors, this research has found a new pathway to improve the performance of systems detecting electromagnetic signal such as radar, night vision, LIDAR (Light Detection and Ranging), and communication. It could also enable new applications such as quantum information science, thermal imaging as well as the search of dark matter.

The part of the research conducted at MIT included work from the Institute for Soldier Nanotechnologies. The U.S. Army established the institute in 2002 as an interdisciplinary research center to dramatically improve protection, survivability and mission capabilities of the Soldier and of Soldier-supporting platforms and systems.

Research paper


Related Links
US Army Research Laboratory
Stellar Chemistry, The Universe And All Within It


Thanks for being here;
We need your help. The SpaceDaily news network continues to grow but revenues have never been harder to maintain.

With the rise of Ad Blockers, and Facebook - our traditional revenue sources via quality network advertising continues to decline. And unlike so many other news sites, we don't have a paywall - with those annoying usernames and passwords.

Our news coverage takes time and effort to publish 365 days a year.

If you find our news sites informative and useful then please consider becoming a regular supporter or for now make a one off contribution.
SpaceDaily Contributor
$5 Billed Once


credit card or paypal
SpaceDaily Monthly Supporter
$5 Billed Monthly


paypal only


STELLAR CHEMISTRY
Controlling ultrastrong light-matter coupling at room temperature
Gothenburg, Sweden (SPX) Sep 23, 2020
Physicists at Chalmers University of Technology in Sweden, together with colleagues in Russia and Poland, have managed to achieve ultrastrong coupling between light and matter at room temperature. The discovery is of importance for fundamental research and might pave the way for advances within, for example, light sources, nanomachinery, and quantum technology. A set of two coupled oscillators is one of the most fundamental and abundant systems in physics. It is a very general toy model that descr ... read more

Comment using your Disqus, Facebook, Google or Twitter login.



Share this article via these popular social media networks
del.icio.usdel.icio.us DiggDigg RedditReddit GoogleGoogle

STELLAR CHEMISTRY
Inducing plasma in biomass could make biogas easier to produce

Novel photocatalysts can perform solar-driven conversion of CO2 into fuel

Cascades with carbon dioxide

Chemistry's Feng Lin Lab is splitting water molecules for a renewable energy future

STELLAR CHEMISTRY
Subterranean Challenge Identifies Qualified Teams for Cave Circuit Virtual Competition

First tests for landing the Martian Moons eXploration Rover

Teams demonstrate swarm tactics in fourth major OFFSET Field Experiment

Technology developed for Lunar landings makes self-driving cars safer on Earth

STELLAR CHEMISTRY
California offshore winds show promise as power source

Offshore wind power now so cheap it could pay money back to consumers

Trust me if you can

Ingeteam's advanced simulation models to ease wind power grid integration

STELLAR CHEMISTRY
European carmakers' leather use fuelling deforestation: NGO

O2 launches UK's first driverless cars lab

California to ban sale of gasoline-powered cars by 2035

Electric truck startup Nikola postpones December event

STELLAR CHEMISTRY
Promising computer simulations for stellarator plasmas

Corvus Energy to supply batteries for five new all-electric ferries

Energy harvesting goes organic, gets more flexible

Predicting the slow death of lithium-ion batteries

STELLAR CHEMISTRY
Filtering radioactive elements from water

Framatome joins with academia and industry partners to develop nuclear reactor digital twins

Russia's giant nuclear-powered icebreaker makes maiden voyage

EU court approves UK state aid for nuclear plant

STELLAR CHEMISTRY
Canada spends on infrastructure to boost jobs, cut CO2 emissions

Deloitte scraps report on climate change benefit for GDP

'Big Four' accounting firm sees upside to climate change

Big promises, but can China be carbon neutral by 2060

STELLAR CHEMISTRY
Pine needles evolved to help trees cope with rainfall

Brazil court blocks move to repeal mangrove protections

Brazil's Bolsonaro hits back at Biden over rainforest

Brazil rejects deforestation concerns; Victim of 'brutal disinformation' says Bolsonaro









The content herein, unless otherwise known to be public domain, are Copyright 1995-2024 - Space Media Network. All websites are published in Australia and are solely subject to Australian law and governed by Fair Use principals for news reporting and research purposes. AFP, UPI and IANS news wire stories are copyright Agence France-Presse, United Press International and Indo-Asia News Service. ESA news reports are copyright European Space Agency. All NASA sourced material is public domain. Additional copyrights may apply in whole or part to other bona fide parties. All articles labeled "by Staff Writers" include reports supplied to Space Media Network by industry news wires, PR agencies, corporate press officers and the like. Such articles are individually curated and edited by Space Media Network staff on the basis of the report's information value to our industry and professional readership. Advertising does not imply endorsement, agreement or approval of any opinions, statements or information provided by Space Media Network on any Web page published or hosted by Space Media Network. General Data Protection Regulation (GDPR) Statement Our advertisers use various cookies and the like to deliver the best ad banner available at one time. All network advertising suppliers have GDPR policies (Legitimate Interest) that conform with EU regulations for data collection. By using our websites you consent to cookie based advertising. If you do not agree with this then you must stop using the websites from May 25, 2018. Privacy Statement. Additional information can be found here at About Us.