Quantum error correction will be an essential ingredient in realizing fault-tolerant quantum computing. However, most correction schemes rely on the assumption that errors are sufficiently uncorrelated in space and time. In superconducting qubits, this assumption is drastically violated in the presence of ionizing radiation, which creates bursts of high-energy phonons in the substrate. These phonons can break Cooper pairs in the superconductor and, thus, create quasiparticles over large areas, consequently reducing qubit coherence across the quantum device in a correlated fashion. A potential mitigation technique is to place large volumes of normal or superconducting metal on the device, capable of reducing the phonon energy to below the su...
Quasiparticles represent an intrinsic source of perturbation for superconducting qubits, leading to ...
Controlling quasiparticle dynamics can improve the performance of superconducting devices. For examp...
Bogoliubov quasiparticle excitations are detrimental for the operation of many superconducting devic...
Quantum computers have the potential to solve critical problems that are intractable on conventional...
Quantum error correction can preserve quantum information in the presence of local errors, but corre...
Quantum error correction can preserve quantum information in the presence of local errors, but corre...
Identifying, quantifying, and suppressing decoherence mechanisms in qubits are important steps towar...
Out of equilibrium quasiparticles (QPs) are one of the main sources of decoherence in superconductin...
A quantum computer will potentially solve far-reaching problems which are currently intractable on a...
Advances in materials science and engineering have played a central role in the development of class...
Over the past two decades the performance of superconducting quantum bits (qubits) has been improved...
Quantum bits, or qubits, are an example of coherent circuits envisioned for next-generation computer...
Quantum computers promise to solve certain problems such as quantum chemistry simulations much more ...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Technologies that rely on...
International audienceAbstractAs quantum coherence times of superconducting circuits have increased ...
Quasiparticles represent an intrinsic source of perturbation for superconducting qubits, leading to ...
Controlling quasiparticle dynamics can improve the performance of superconducting devices. For examp...
Bogoliubov quasiparticle excitations are detrimental for the operation of many superconducting devic...
Quantum computers have the potential to solve critical problems that are intractable on conventional...
Quantum error correction can preserve quantum information in the presence of local errors, but corre...
Quantum error correction can preserve quantum information in the presence of local errors, but corre...
Identifying, quantifying, and suppressing decoherence mechanisms in qubits are important steps towar...
Out of equilibrium quasiparticles (QPs) are one of the main sources of decoherence in superconductin...
A quantum computer will potentially solve far-reaching problems which are currently intractable on a...
Advances in materials science and engineering have played a central role in the development of class...
Over the past two decades the performance of superconducting quantum bits (qubits) has been improved...
Quantum bits, or qubits, are an example of coherent circuits envisioned for next-generation computer...
Quantum computers promise to solve certain problems such as quantum chemistry simulations much more ...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Technologies that rely on...
International audienceAbstractAs quantum coherence times of superconducting circuits have increased ...
Quasiparticles represent an intrinsic source of perturbation for superconducting qubits, leading to ...
Controlling quasiparticle dynamics can improve the performance of superconducting devices. For examp...
Bogoliubov quasiparticle excitations are detrimental for the operation of many superconducting devic...