Close Menu
    Facebook X (Twitter) Instagram
    SciTechDaily
    • Biology
    • Chemistry
    • Earth
    • Health
    • Physics
    • Science
    • Space
    • Technology
    Facebook X (Twitter) Pinterest YouTube RSS
    SciTechDaily
    Home»Technology»Controlling Two-Dimensional Superconductors With Terahertz Light
    Technology

    Controlling Two-Dimensional Superconductors With Terahertz Light

    By Institute for Basic ScienceMay 30, 20201 Comment3 Mins Read
    Facebook Twitter Pinterest Telegram LinkedIn WhatsApp Email Reddit
    Share
    Facebook Twitter LinkedIn Pinterest Telegram Email Reddit
    Controlling Superconductors With Light Concept
    A researcher has discovered that light at terahertz (THz) frequencies, which lies between the radio and infrared domains, could be used to optically explore the properties of superconductors.

    New theoretical study shows how to use Terahertz light to peep in the secrets of two-dimensional superconductors

    A researcher at the Center for Theoretical Physics of Complex Systems, within the Institute for Basic Science (IBS, South Korea), Professor Ivan Savenko, has reported a conceptually new method to study the properties of superconductors using optical tools. The theory was published in Physical Review Letters and co-authored by Doctor Vadim Kovalev, physicist at the A.V. Rzhanov Institute of Semiconductor Physics (Russia).

    Below some temperature, the resistivity of a material can disappear, and thus, superconducting properties emerge. These are usually extremely low temperatures, between -200°C (-328°F) and -272°C (-458°F), where commonly unbound electrons suddenly change their behavior and pair up, forming Cooper pairs. This transition manifests itself with supercurrents, which can circulate in the material forever without losses.

    Two-Dimensional Superconductor Close to Critical Temperature
    Graphic of the system: a two-dimensional superconductor close to its critical temperature. The system is exposed to electromagnetic field (orange arrow) with THz frequency. Stripes of metals as a grating (not shown) are required for the excitation of plasmons, a special type of excitations of unbound electrons in the superconductor. Thus, unbound electrons act as mediators: they interact with each other, with light (as plasmons), and with the Cooper pairs, depicted as dashed red circles. Credit: IBS

    However, superconducting properties can appear slightly above the critical temperature. In this so-called fluctuating regime, Cooper pairs start to appear and disappear, drastically altering the electric conductivity and other properties of the superconductor. More than fifty years ago, Aslamazov and Larkin developed a theory which says that the conductivity of fluctuating superconductors is mediated by both unbound electrons and Cooper pairs. However, fluctuating superconductivity is such a challenging research topic that it continues to be investigated. In this new study, the researchers suggest a way to monitor these electron transport phenomena with optical spectroscopy, an experimentally available optical platform.

    “While the resistivity-based and magnetic methods to monitor superconductors are well established, it is very hard to “marry” light and superconductivity,” explains Savenko. “This is a hot research field where we can expect new discoveries in fundamental science and innovative applications.”

    Superconductivity and light are two seemingly unrelated phenomena. Usually, superconductors are not very sensitive to external light: they can only weakly interact with it, and rather serve as mirrors. This study, instead, shows that light at terahertz (THz) frequencies, which lie between the radio and infrared domains, could be used to optically explore the properties of superconductors.

    The researchers modeled the optical and electrical responses of a 2D fluctuating semiconducting layer exposed to THz waves. Approaching the critical temperature, the emerging Cooper pairs cause significant changes in electric conductivity and light absorption by the system. The unbound electrons act as mediators, interacting with both Cooper pairs and light.

    “The design we developed is very simple. Therefore, we believe that our discovery can be applicable to multiple cases,” says Savenko. “We expect that the corresponding experiment will be conducted in the near future. It should show either the modification of the electric current, or the alteration of the reflected or transmitted light spectrum, depending on the density of the Cooper pairs.”

    Reference: “Proposal for Plasmon Spectroscopy of Fluctuations in Low-Dimensional Superconductors” by V. M. Kovalev and I. G. Savenko, 18 May 2020, Physical Review Letters.
    DOI: 10.1103/PhysRevLett.124.207002

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

    2D Materials Institute for Basic Science Superconductivity
    Share. Facebook Twitter Pinterest LinkedIn Email Reddit

    Related Articles

    Magnetic Surprise Revealed in “Magic-Angle” Graphene – Potential Quantum Computing Applications

    MIT Turns “Magic” Superconducting Material Into Versatile Electronic Devices

    Awestruck Scientists Watch 2D Puddles of Electrons Spontaneously Emerge in a 3D Superconducting Material

    Kitchen Temperature Superconductivity From Stacked 2D Materials

    Dirac Electrons Come Back to Life in Magic-Angle Graphene – Unusual Breaking of Symmetry

    New Zoo of Previously Unobserved States in Twisted Bi-Layer Graphene

    New Superconducting Material Discovered That Could Power Quantum Computers of the Future

    Controlling Complex Pattern of Superconductivity Within an Exotic Metal

    “Patterned Regrowth” May Lead to Graphene-Based Circuits

    1 Comment

    1. Nista on May 30, 2020 7:54 am

      ok

      Reply
    Leave A Reply Cancel Reply

    • Facebook
    • Twitter
    • Pinterest
    • YouTube

    Don't Miss a Discovery

    Subscribe for the Latest in Science & Tech!

    Trending News

    Scientists May Have Found the Key to Jupiter and Saturn’s Moon Mystery

    Scientists Uncover Brain Changes That Link Pain to Depression

    Saunas May Do More Than Raise Body Temperature – They Activate Your Immune System

    Exercise in a Pill? Metformin Shows Surprising Effects in Cancer Patients

    Hidden Oceans of Magma Could Be Protecting Alien Life

    New Study Challenges Alzheimer’s Theories: It’s Not Just About Plaques

    Artificial Sweeteners May Harm Future Generations, Study Suggests

    Splashdown! NASA Artemis II Returns From Record-Breaking Moon Mission

    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
    • Breakthrough Drug Delays Rheumatoid Arthritis for Years After Treatment Ends
    • This Small Change to Your Exercise Routine Could Be the Secret to Living Longer
    • Physicists Discover a Strange New Kind of One-Dimensional Particle
    • Scientists Discover Unexpected Climate Benefit Hidden in Forest Soils
    • The Grand Canyon’s “Swiss Cheese” Rocks Hold a Critical Secret
    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.