Superconducting Nanowire Single Photon Detectors for Quantum Photonic Integrated Circuits on GaAs

This book PDF is perfect for those who love Science genre, written by Schmidt, Wolfgang-Gustav Ekkehart and published by KIT Scientific Publishing which was released on 09 July 2020 with total hardcover pages 240. You could read this book directly on your devices with pdf, epub and kindle format, check detail and related Superconducting Nanowire Single Photon Detectors for Quantum Photonic Integrated Circuits on GaAs books below.

Superconducting Nanowire Single Photon Detectors for Quantum Photonic Integrated Circuits on GaAs

Download or read online Superconducting Nanowire Single Photon Detectors for Quantum Photonic Integrated Circuits on GaAs written by Schmidt, Wolfgang-Gustav Ekkehart, published by KIT Scientific Publishing which was released on 2020-07-09. Get Superconducting Nanowire Single Photon Detectors for Quantum Photonic Integrated Circuits on GaAs Books now! Available in PDF,

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Superconducting Devices in Quantum Optics

This book presents the basics and applications of superconducting devices in quantum optics. Over the past decade, superconducting devices have risen to prominence in the arena of quantum optics and quantum information processing. Superconducting detectors provide unparalleled performance for the detection of infrared photons in quantum cryptography, enable fundamental advances

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Technology and readout for scaling up superconducting nanowire single photon detectors

This work presents three advances to scale SNSPDs from few-pixel devices to large detector arrays: atomic layer deposition for the fabrication of uniform superconducting niobium nitride films of few-nanometer thickness, a frequency-multiplexing scheme to operate multiple detectors with a reduced number of lines, and the integration of SNSPDs with free-form

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Evaluation of the Use of Superconducting 380 kV Cable

Diese Studie führt eine Auslegung von supraleitenden Kabeln für die Anwendung im 380-kV-Drehstromnetz durch und erläutert allgemeine Aspekte des Einsatzes solcher Kabel im Höchstspannungsnetz. Dabei vergleicht sie die Supraleitungstechnologie unter vielen verschiedenen Kriterien mit anderen Leitungstechnologien. - This study describes the design of superconducting cables for

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Development of high temperature superconductor cables for high direct current applications

A design process for HTS DC cables was developed for high current applications. Based on the design process, a 35 kA HTS DC cable demonstrator was developed. The superconducting elements of the demonstrator were manufactured and tested individually at 77 K. Afterwards, the demonstrator cable was assembled and tested at 77 K. The

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Fluorescent thermal imaging method for investigating transient effects in high temperature superconductor tapes and coils

This work presents the development and application of high-speed fluorescent thermal imaging for quench analysis in high-temperature superconductors (HTS). Using a fluorescent coating, with a temperature-dependent light emission, temperature changes can be calculated over 2D surfaces. The technique uncovered peculiar transient effects in novel HTS tape architectures and also helped

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Prospective Life Cycle Assessment of High Temperature Superconductors for Future Grid Applications

High-temperature superconductors have distinct advantages compared to conventional conductors. Below their critical temperature, superconductors have immeasurably low ohmic losses. To maintain the superconducting state, superconductors require constant cooling. This study aims at identifying the environmental impacts of the application of superconductors in future grid technologies such as superconducting power cables.

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AC Losses in High Temperature Superconductor Tapes and Cables for Power Applications

This work focuses on two topics. The first is the investigation of producing filaments on copper-stabilized coated conductors, with striations made after or before electroplating the tape. The second topic is the applicability of the striations for reducing the AC losses of cables, in particular the CORC® and RACC cables,

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