Close Menu
    Facebook X (Twitter) Instagram
    SciTechDaily
    • Biology
    • Chemistry
    • Earth
    • Health
    • Physics
    • Science
    • Space
    • Technology
    Facebook X (Twitter) Pinterest YouTube RSS
    SciTechDaily
    Home»Technology»Quantum Radar Prototype Demonstrated – “Microwave Quantum Illumination” Outperforms Classical Radar
    Technology

    Quantum Radar Prototype Demonstrated – “Microwave Quantum Illumination” Outperforms Classical Radar

    By Institute of Science and Technology AustriaMay 8, 2020No Comments4 Mins Read
    Facebook Twitter Pinterest Telegram LinkedIn WhatsApp Email Reddit
    Share
    Facebook Twitter LinkedIn Pinterest Telegram Email Reddit
    Quantum Radar Prototype Illustration
    This is an illustration of a quantum radar prototype. Credit: © IST Austria/Philip Krantz

    New detection technique based on quantum technology developed at IST Austria.

    Quantum entanglement is a physical phenomenon where two particles remain inter-connected, sharing physical traits regardless of how far apart they are from one another. Now, scientists from the research group of Professor Johannes Fink at the Institute of Science and Technology Austria (IST Austria) along with collaborators Stefano Pirandola from the Massachusetts Institute of Technology (MIT) and the University of York, UK, and David Vitali from the University of Camerino, Italy — have demonstrated a new type of detection technology called ‘microwave quantum illumination’ that utilizes entangled microwave photons as a method of detection. The prototype, which is also known as a ‘quantum radar’, is able to detect objects in noisy thermal environments where classical radar systems often fail. The technology has potential applications for ultra-low power biomedical imaging and security scanners.

    Using quantum entanglement as a new form of detection

    The working principles behind the device are simple: Instead of using conventional microwaves, the researchers entangle two groups of photons, which are called the ‘signal’ and ‘idler’ photons. The ‘signal’ photons are sent out towards the object of interest, whilst the ‘idler’ photons are measured in relative isolation, free from interference and noise. When the signal photons are reflected back, true entanglement between the signal and idler photons is lost, but a small amount of correlation survives, creating a signature or pattern that describes the existence or the absence of the target object — irrespective of the noise within the environment.

    “What we have demonstrated is a proof of concept for Microwave Quantum Radar,” says lead author and at the time of the research project postdoc in the Fink group Shabir Barzanjeh, whose previous research helped advance the theoretical notion behind quantum enhanced radar technology. “Using entanglement generated at a few thousandths of a degree above absolute zero (-273.14 °C), we have been able to detect low reflectivity objects at room temperature.”

    Quantum technology can outperform classical low-power radar

    While quantum entanglement in itself is fragile in nature, the device has a few advantages over conventional classical radars. For instance, at low power levels, conventional radar systems typically suffer from poor sensitivity as they have trouble distinguishing the radiation reflected by the object from naturally occurring background radiation noise. Quantum illumination offers a solution to this problem as the similarities between the ‘signal’ and ‘idler’ photons — generated by quantum entanglement — makes it more effective to distinguish the signal photons (received from the object of interest) from the noise generated within the environment. Barzanjeh who is now an Assistant Professor at the University of Calgary on the prototype’s performance: “The main message behind our research is that ‘quantum radar’ or ‘quantum microwave illumination’ is not only possible in theory but also in practice. When benchmarked against classical low-power detectors in the same conditions we already see, at very low-signal photon numbers, that quantum-enhanced detection can be superior.”

    Prominent milestone towards advancing 80 year-old radar technology

    Throughout history, basic science has been one of the key drivers of innovation, paradigm shifts, and technological breakthroughs. Whilst still a proof of concept, the group’s research has effectively demonstrated a new method of detection that, in some cases, may already be superior to classical radar.

    “Throughout history, proof of concepts such as the one we have demonstrated here have often served as prominent milestones towards future technological advancements. It will be interesting to see the future implications of this research, particularly for short-range microwave sensors,” says Barzanjeh.

    Last author and group leader Professor Johannes Fink adds “This scientific result was only possible by bringing together theoretical and experimental physicists that are driven by the curiosity of how quantum mechanics can help to push the fundamental limits of sensing. But to show an advantage in practical situations we will also need the help of experienced electrical engineers and there still remains a lot of work to be done in order to make our result applicable to real-world detection tasks.”

    Reference: “Microwave quantum illumination using a digital receiver” by S. Barzanjeh, S. Pirandola, D. Vitali and J. M. Fink, 8 May 2020, Science Advances.
    DOI: 10.1126/sciadv.abb0451

    Never miss a breakthrough: Join the SciTechDaily newsletter.
    Follow us on Google and Google News.

    Imaging Quantum Physics Radar
    Share. Facebook Twitter Pinterest LinkedIn Email Reddit

    Related Articles

    New Spin Technique Moves Quantum Computers a Step Closer

    Yale Physicists Observe Quantum Information While Preserving Its Integrity

    Sandy Island, The Island That Wasn’t There

    Photon Devices Could Outperform Traditional Computers

    Samarium Hexoboride Behaves Like a Topological Insulator

    DARPA Program Takes Advantage of Floating Icebergs

    Electronic Read-Out of the Quantum State of an Atom

    Quantum Photon Gun Could Be Basis for Quantum Information Processing

    New Radar Satellite Can See Through Thick Clouds

    Leave A Reply Cancel Reply

    • Facebook
    • Twitter
    • Pinterest
    • YouTube

    Don't Miss a Discovery

    Subscribe for the Latest in Science & Tech!

    Trending News

    These Toads Are Surviving a Deadly Fungus – Scientists May Finally Know Why

    These Brain Cells May Explain Why We Eventually Have To Sleep

    Tomatoes Contain an Invisible Ingredient With Surprising Effects on Liver Health

    World’s First Heat-Powered Cooling System Turns Waste Heat Into Cold

    Antarctica Gained a Record 695 Billion Tons of Ice in Just Two Years

    Don’t Miss: A Brilliant Venus and Glowing Harvest Moon Light Up the Sky

    New Twist on the Einstein Problem Reveals Unexpected Physics

    JWST Captures Stunning Evidence of How Supermassive Black Holes Feed

    Follow SciTechDaily
    • Facebook
    • Twitter
    • YouTube
    • Pinterest
    • Newsletter
    • RSS
    SciTech News
    • Biology News
    • Chemistry News
    • Earth News
    • Health News
    • Physics News
    • Science News
    • Space News
    • Technology News
    Recent Posts
    • Scientists Discover a Hidden Defect That Could Explain Why IBD Keeps Coming Back
    • Millions Take Blood Pressure Drugs, but Many May Be Missing Their Heart-Protective Benefits
    • Could Alien Life Be Conscious in Ways We Can’t Imagine?
    • Scientists Develop a Fruit Wash That Removes Pesticide Residues and Keeps Produce Fresh Longer
    • Scientists May Have Finally Explained Why Astronauts Get Constipated in Space
    Copyright © 1998 - 2026 SciTechDaily. All Rights Reserved.
    • Science News
    • About
    • Contact
    • Editorial Board
    • Privacy Policy
    • Terms of Use

    Type above and press Enter to search. Press Esc to cancel.