
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
AC Losses Properties of Optical Fiber Encapsulated High
Optical fiber encapsulated (OFE) high temperature superconducting (HTS) conductor on round core (CORC) cable, has an ability of self-quench detection by embedded optical fibers and
Opto-electrical Data Transfer from Room Temperature to 4K for
Modulated optical signal is sent from RT to 4K through a fiber Opto-electrical receiver at 4K followed by qubit interfacing ASICs
Optical fibre for superconducting quantum computers
A photonic link using an optical fibre to guide modulated laser light from room temperature to a cryogenic photodetector was employed. The researchers were
On the verge of high temperature superconducting fibers
The discovery of high temperature superconductors and recent improvements in cable designs and manufacturing methods seem to be promising, but a truly novel and multi-disciplinary
arXiv:2309.03284v2 [quant-ph] 26 Nov 2023
Superconducting electro-optic modulator (SEOM) and its application in cryogenic-to-room-temperature link. a, The mi- crowave loss in normal metal leads to a fundamental trade-off be- tween modulator''s
A fully packaged cryogenic optical transmitter directly
An electronic–photonic transmitter chip can enable signal readout of superconducting electronics for interfacing with room-temperature environments.
AC Losses Properties of Optical Fiber Encapsulated High Temperature
AC loss is one of the most important factors affecting operating states of superconductors. Optical fiber encapsulated (OFE) high temperature superconducting (HTS)
High-Temperature Superconducting Fiber | Journal of
The high-temperature superconducting fiber provides a glimpse of its cross cutting potential in fields of electromagnetism, healthcare, optics, and energy and lends credence to the
All-optical superconducting qubit readout
Microwaves are usually used to interact with superconducting qubits, but optical photons can be processed at room temperature. The electro-optical transceiver presented here allows all
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A photonic link for quantum circuits
Passive loads originate from the heat dissipation in coaxial cables and other direct-current lines that connect the superconducting circuits to control electronics at room temperature.
Monitoring distributed temperatures along superconducting
ABSTRACT To support new naval superconducting systems, prototype fiber optic distributed temperature critical temperature (Tc) from just above the boiling
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