Electromagnetic filtering is essential for the coherent control, operation and readout of superconducting quantum circuits at milliKelvin temperatures. The suppression of spurious modes around transition frequencies of a few GHz is well understood and mainly achieved by on-chip and package considerations. Noise photons of higher frequencies – beyond the pair-breaking energies – cause decoherence and require spectral engineering before reaching the packaged quantum chip. The external wires that pass into the refrigerator and go down to the quantum circuit provide a direct path for these photons. This article contains quantitative analysis and experimental data for the noise photon flux through coaxial, filtered wiring. The attenuation of the...
Superconducting circuits and devices have unique properties that make them interesting from both the...
In the physical implementation of modern superconducting quantum computing systems, microwaves play ...
Microwave-to-optical transducers are integral to the future of superconducting quantum computing, as...
Electromagnetic noise is one of the key external factors decreasing superconducting qubits coherence...
The quantum bits (qubits) on which superconducting quantum computers are based have energy scales co...
The quantum bits (qubits) on which superconducting quantum computers are based have energy scales co...
Quantum-limited amplification in the microwave frequency range is of both practical and fundamental ...
Minimizing microwave background of cryogenic environment is crucial for quantum devices where single...
From microwave ovens to satellite television to the GPS and data services on our mobile phones, micr...
URL: http://www-spht.cea.fr/articles/s06/034International audienceIn this article we report on the d...
Quantum microwave transmission is key to realizing modular superconducting quantum computers and dis...
Superconducting circuits and devices have unique properties that make them interesting from both the...
Noise filtering is an essential part for measurement of quantum phenomena at extremely low temperatu...
Low-loss waveguides are required for quantum communication at distances beyond the chip-scale for an...
Noise filtering is an essential part for measurement of quantum phenomena at extremely low temperatu...
Superconducting circuits and devices have unique properties that make them interesting from both the...
In the physical implementation of modern superconducting quantum computing systems, microwaves play ...
Microwave-to-optical transducers are integral to the future of superconducting quantum computing, as...
Electromagnetic noise is one of the key external factors decreasing superconducting qubits coherence...
The quantum bits (qubits) on which superconducting quantum computers are based have energy scales co...
The quantum bits (qubits) on which superconducting quantum computers are based have energy scales co...
Quantum-limited amplification in the microwave frequency range is of both practical and fundamental ...
Minimizing microwave background of cryogenic environment is crucial for quantum devices where single...
From microwave ovens to satellite television to the GPS and data services on our mobile phones, micr...
URL: http://www-spht.cea.fr/articles/s06/034International audienceIn this article we report on the d...
Quantum microwave transmission is key to realizing modular superconducting quantum computers and dis...
Superconducting circuits and devices have unique properties that make them interesting from both the...
Noise filtering is an essential part for measurement of quantum phenomena at extremely low temperatu...
Low-loss waveguides are required for quantum communication at distances beyond the chip-scale for an...
Noise filtering is an essential part for measurement of quantum phenomena at extremely low temperatu...
Superconducting circuits and devices have unique properties that make them interesting from both the...
In the physical implementation of modern superconducting quantum computing systems, microwaves play ...
Microwave-to-optical transducers are integral to the future of superconducting quantum computing, as...