Extending the qubit coherence times is a crucial task in building quantum information processing devices. In the three-dimensional cavity implementations of circuit QED, the coherence of superconducting qubits was improved dramatically due to cutting the losses associated with the photon emission. Next frontier in improving the coherence includes the mitigation of the adverse effects of superconducting quasiparticles. In these lectures, we review the basics of the quasiparticles dynamics, their interaction with the qubit degree of freedom, their contribution to the qubit relaxation rates, and approaches to control their effect
Identifying, quantifying, and suppressing decoherence mechanisms in qubits are important steps towar...
Superconducting quantum circuit models are widely used to understand superconducting devices. This ...
Decoherence of a quantum bit (qubit) as a building block for quantum computer is one of the most imp...
Copyright 2016 by the American Association for the Advancement of Science; all rights reserved.Dynam...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Technologies that rely on...
Superconducting quantum devices have drawn the attention of physicists greatly in recent years, not ...
In the current design of superconducting qubit based on circuit QED architecture, it can be rather c...
International audienceAbstractAs quantum coherence times of superconducting circuits have increased ...
Non-equilibrium quasiparticles can deteriorate the performance of superconducting qubits by reducing...
Superconducting circuits have attracted growing interest in recent years as a promising candidate fo...
Nonequilibrium quasiparticle excitations degrade the performance of a variety of superconducting cir...
Bogoliubov quasiparticle excitations are detrimental for the operation of many superconducting devic...
A quantum computer will potentially solve far-reaching problems which are currently intractable on a...
Abstract-Current-biased Josephson junctions are prime candidates for the realization of quantum bits...
As the energy relaxation time of superconducting qubits steadily improves, nonequilibrium quasiparti...
Identifying, quantifying, and suppressing decoherence mechanisms in qubits are important steps towar...
Superconducting quantum circuit models are widely used to understand superconducting devices. This ...
Decoherence of a quantum bit (qubit) as a building block for quantum computer is one of the most imp...
Copyright 2016 by the American Association for the Advancement of Science; all rights reserved.Dynam...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Technologies that rely on...
Superconducting quantum devices have drawn the attention of physicists greatly in recent years, not ...
In the current design of superconducting qubit based on circuit QED architecture, it can be rather c...
International audienceAbstractAs quantum coherence times of superconducting circuits have increased ...
Non-equilibrium quasiparticles can deteriorate the performance of superconducting qubits by reducing...
Superconducting circuits have attracted growing interest in recent years as a promising candidate fo...
Nonequilibrium quasiparticle excitations degrade the performance of a variety of superconducting cir...
Bogoliubov quasiparticle excitations are detrimental for the operation of many superconducting devic...
A quantum computer will potentially solve far-reaching problems which are currently intractable on a...
Abstract-Current-biased Josephson junctions are prime candidates for the realization of quantum bits...
As the energy relaxation time of superconducting qubits steadily improves, nonequilibrium quasiparti...
Identifying, quantifying, and suppressing decoherence mechanisms in qubits are important steps towar...
Superconducting quantum circuit models are widely used to understand superconducting devices. This ...
Decoherence of a quantum bit (qubit) as a building block for quantum computer is one of the most imp...