Results 121 to 130 of about 38,658 (199)
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Nature, 2001
Polymers that can conduct electricity have been known for some time, but they have defied attempts to make them into superconductors. The answer, it turns out, is to inject them with charge — but how does it work?
Denis Jérome, Klaus Bechgaard
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Polymers that can conduct electricity have been known for some time, but they have defied attempts to make them into superconductors. The answer, it turns out, is to inject them with charge — but how does it work?
Denis Jérome, Klaus Bechgaard
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Cold Dark Matter Based on an Analogy with Superconductivity.
Physical Review LettersWe present a novel candidate for cold dark matter consisting of condensed Cooper pairs in a theory of interacting fermions with broken chiral symmetry. Establishing the thermal history from the early radiation era to the present, the fermions are shown ...
Guanming Liang, Robert R. Caldwell
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AIP Conference Proceedings, 2015
We address the issue of qualifications of the niobium materials to be used for superconducting radio frequency (SCRF) cavity fabrications, from the point of view of a condensed matter physicist/materials scientist. We focus on the particular materials properties of niobium required for the functioning a SCRF cavity, and how to optimize the same ...
S. B. Roy, G. R. Myneni
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We address the issue of qualifications of the niobium materials to be used for superconducting radio frequency (SCRF) cavity fabrications, from the point of view of a condensed matter physicist/materials scientist. We focus on the particular materials properties of niobium required for the functioning a SCRF cavity, and how to optimize the same ...
S. B. Roy, G. R. Myneni
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Predicted hot superconductivity in LaSc2H24 under pressure
Proceedings of the National Academy of Sciences of the United States of AmericaSignificance Room-temperature superconductivity has been a long-held dream of condensed matter physics for over a century. Here, we predict a class of thermodynamically stable clathrate hydrides consisting of two previously unreported H24 and H30 cages ...
Xin-Ling He+6 more
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AIP Conference Proceedings, 2009
Low-temperature physics and astronomy have traditionally focused on developing exquisitely sensitive single‐pixel detectors. While this has yielded considerable results, these technologies almost uniformly suffer from an inability to scale to large array sizes. In order to circumvent this barrier, frequency-multiplexing techniques have recently emerged
L. J. Swenson+20 more
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Low-temperature physics and astronomy have traditionally focused on developing exquisitely sensitive single‐pixel detectors. While this has yielded considerable results, these technologies almost uniformly suffer from an inability to scale to large array sizes. In order to circumvent this barrier, frequency-multiplexing techniques have recently emerged
L. J. Swenson+20 more
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Nickel probes superconductivity
Nature, 2001Magnetism usually destroys superconductivity, but a magnetic nickel atom inserted into a high-temperature superconductor has surprisingly little effect on its local environment.
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Nickel Age of High‐Temperature Superconductivity
Advanced Materials InterfacesUnconventional high‐temperature superconductivity has long been a captivating puzzle in condensed matter physics. The 1987 Nobel Prize in Physics celebrated the discovery of high‐temperature superconductivity in copper oxide ceramics. Nearly four decades
S. L. E. Chow, A. Ariando
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Pressure-driven superconductivity in layered isostructural germanium phosphides
2D MaterialsThe discovery of superconductivity and its modulation are long-standing cutting-edge research topics in condensed matter physics. As a powerful tool, the high-pressure technique can be used to achieve novel superconductors and tune their physical ...
Junwei Huang+13 more
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