
Graphene Superconductivity at Room-Temperature of a Wide Range
Graphene SC at room-temperatures of a wide range and standard atmosphere is achieved. This paper uses the optical technology to realize graphene SC, points out the basic reason
Towards room-temperature superconductivity: Insights into optical
Superconductors are materials which conduct electricity without any resistance when cooled down below a critical temperature. These materials have transformative applications in various fields,...
Optical control of superconductivity
Although optical techniques alone cannot unequivocally identify non-equilibrium high-temperature superconductivity, we propose this as a possible explanation of our results.
Light Uncovers Hidden Physics in Superconductors
Scientists have used light transmittance to uncover new details about the optical properties of Bi2212 superconductors, offering insights into their high-temperature performance and
Hybrid optical fiber for light-induced superconductivity
The fabrication of superconducting fibers where a high-temperature superconductivity could be controlled by light would enable passing superconducting currents over extremely long
A fully packaged cryogenic optical transmitter directly
In this Article, we describe a monolithic single-chip cryogenic electronic–photonic interface that can be used to connect superconducting ICs to a room-temperature environment.
arXiv:2309.03284v2 [quant-ph] 26 Nov 2023
Photonic links promise to overcome this challenge by offering simultaneous high bandwidth and low thermal load. However, the development of cryogenic electro-optic modulators a key component for
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