Quantum Communication PLC Spectrometer Resistant to Low Temperatures
Quantum Measurement
Oxford Instruments offer a wide range of low-temperature measurement solutions to enable these complex measurements.
Thermal spectrometer for superconducting circuits
In the low power regime, the measurement is fully calibration-free. Our technique offers an alternative spectrometer for quantum circuits.
Low-noise and wide-bandwidth current readout at low temperatures
We report on the development of a current amplifier for measuring small currents from mesoscopic electronic devices at low temperatures down to the milli-Kelvin range.
Integrated Photonics for Quantum Communications and Metrology
The objective of this Perspective is to review the recent advances made towards developing integrated quantum photonic technologies, as well as the current challenges and future
Characterization of SOS-CMOS FETs at Low Temperatures for the
Abstract: We have assessed the use of commercial silicon-on-sapphire CMOS electronics in control circuits, which could be used to interface with quantum bits at low temperatures.
Absolute PL quantum yield spectrometer C11347 series
Quantaurus-QY® includes an excitation light source consisting of a xenon lamp and a monochromator, an integration sphere with optional nitrogen gas flow, and a multichannel detector capable of
Modicon Quantum Automation Series Hardware Reference Guide
Modicon TSX Quantum Automation Series Overview 16 Quantum Power Supplies 17 Quantum CPU Modules 18 Quantum I/O Modules 19 Quantum Communication Interface Modules 20 Quantum
Thermal spectrometer for superconducting circuits
Moreover, the thermal measurement yields a highly frequency independent reference level of the Lorentzian absorption signal. In the low power regime, the measurement is fully
Quantum Thermometry for Ultra-Low Temperatures Using Probe and
We propose a scheme to enhance the range and precision of ultra-low temperature measurements by employing a probe qubit coupled to a chain of ancilla qubits. Specifically, we
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