We present an experimental study of flux- and gate-tunable nanowire transmons with state-of-the-art relaxation time allowing quantitative extraction of flux and charge noise coupling to the Josephson energy. We evidence coherence sweet spots for charge, tuned by voltage on a proximal side gate, where first order sensitivity to switching two-level systems and background 1/f noise is minimized. Next, we investigate the evolution of a nanowire transmon in a parallel magnetic field up to 70 mT, the upper bound set by the closing of the induced gap. Several features observed in the field dependence of qubit energy relaxation and dephasing times are not fully understood. Using nanowires with a thinner, partially covering Al shell will enable oper...
We developed transmon qubits based on epitaxial tunnel junctions and interdigitated capacitors. This...
This thesis presents the design, development and first spectroscopy measurements of nanowire-based f...
Modern nanofabrication technology enableTfabrication of very narrow quasi-1-dimensional superconduct...
We present an experimental study of flux- and gate-tunable nanowire transmons with state-of-the-art ...
Quantum computers promise to solve certain problems such as quantum chemistry simulations much more ...
We report on spectroscopic and time-domain measurements on a fixed-frequency concentric transmon qub...
The technology of quantum computing is believed to solve certain computational problems significantl...
We report on spectroscopic and time-domain measurements on a fixed-frequency concentric transmon qub...
Isolation from the environment determines the extent to which charge is confined on an island, which...
The tunnelling of quasiparticles across Josephson junctions in superconducting quantum circuits is a...
Superconducting-normalconducting-superconducting (SNS) transmons with 2-facet Al-shell nanowires are...
Magnetic-field-resilient superconducting circuits enable sensing applications and hybrid quantum com...
Parity control of superconducting islands hosting Majorana zero modes (MZMs) is required to operate ...
Majorana bound states (MBSs) are novel particles predicted to be created when superconductor/semicon...
Isolation from the environment determines the extent to which charge is confined on an island, which...
We developed transmon qubits based on epitaxial tunnel junctions and interdigitated capacitors. This...
This thesis presents the design, development and first spectroscopy measurements of nanowire-based f...
Modern nanofabrication technology enableTfabrication of very narrow quasi-1-dimensional superconduct...
We present an experimental study of flux- and gate-tunable nanowire transmons with state-of-the-art ...
Quantum computers promise to solve certain problems such as quantum chemistry simulations much more ...
We report on spectroscopic and time-domain measurements on a fixed-frequency concentric transmon qub...
The technology of quantum computing is believed to solve certain computational problems significantl...
We report on spectroscopic and time-domain measurements on a fixed-frequency concentric transmon qub...
Isolation from the environment determines the extent to which charge is confined on an island, which...
The tunnelling of quasiparticles across Josephson junctions in superconducting quantum circuits is a...
Superconducting-normalconducting-superconducting (SNS) transmons with 2-facet Al-shell nanowires are...
Magnetic-field-resilient superconducting circuits enable sensing applications and hybrid quantum com...
Parity control of superconducting islands hosting Majorana zero modes (MZMs) is required to operate ...
Majorana bound states (MBSs) are novel particles predicted to be created when superconductor/semicon...
Isolation from the environment determines the extent to which charge is confined on an island, which...
We developed transmon qubits based on epitaxial tunnel junctions and interdigitated capacitors. This...
This thesis presents the design, development and first spectroscopy measurements of nanowire-based f...
Modern nanofabrication technology enableTfabrication of very narrow quasi-1-dimensional superconduct...