The technology of quantum computing is believed to solve certain computational problems significantly faster than classical computers, enabling classically inaccessible problems. However, the technology is still in its infancy and it is still too early to conclude which physical system(s) will form the basis of tomorrow's quantum computer. Small-scale quantum processors, built on the superconducting transmon qubit, demonstrated already the anticipated quantum speed-up. Despite this tremendous milestone, scaling up to a full-fledged quantum computer is far from trivial: with these qubits, the flux-control causes crosstalk between qubits and heating, the room-temperature microwave control is hardly scalable and comes with high energetic radia...
We report the realization of quantum microwave circuits using hybrid superconductor-semiconductor Jo...
We report the realization of quantum microwave circuits using hybrid superconductor-semiconductor Jo...
We present an experimental study of flux- and gate-tunable nanowire transmons with state-of-the-art ...
The technology of quantum computing is believed to solve certain computational problems significantl...
Majorana bound states (MBSs) are novel particles predicted to be created when superconductor/semicon...
Quantum computers promise to solve certain problems such as quantum chemistry simulations much more ...
Circuit quantum electrodynamics has proven to be a powerful tool to probe mesoscopic effects in hybr...
After a century from the quantum description of nature, the scientific community has laid the basis ...
Quantum technology is a promising area of research, with the quantum computer as the prime example. ...
Superconductor–semiconductor hybrid devices are interesting not only for their known and potential a...
Quantum technology is an exciting research area that has gained a lot of interest in the past few de...
Quantum computing is a flourishing field of scientific and technological research. The development o...
Josephson junctions form a two-level system which is used as a building block for many types of supe...
Quantum computers can solve some problems exponentially faster than classical computers. Unfortunate...
Majorana zero modes have been proposed as building blocks of intrinsically fault-tolerant quantum co...
We report the realization of quantum microwave circuits using hybrid superconductor-semiconductor Jo...
We report the realization of quantum microwave circuits using hybrid superconductor-semiconductor Jo...
We present an experimental study of flux- and gate-tunable nanowire transmons with state-of-the-art ...
The technology of quantum computing is believed to solve certain computational problems significantl...
Majorana bound states (MBSs) are novel particles predicted to be created when superconductor/semicon...
Quantum computers promise to solve certain problems such as quantum chemistry simulations much more ...
Circuit quantum electrodynamics has proven to be a powerful tool to probe mesoscopic effects in hybr...
After a century from the quantum description of nature, the scientific community has laid the basis ...
Quantum technology is a promising area of research, with the quantum computer as the prime example. ...
Superconductor–semiconductor hybrid devices are interesting not only for their known and potential a...
Quantum technology is an exciting research area that has gained a lot of interest in the past few de...
Quantum computing is a flourishing field of scientific and technological research. The development o...
Josephson junctions form a two-level system which is used as a building block for many types of supe...
Quantum computers can solve some problems exponentially faster than classical computers. Unfortunate...
Majorana zero modes have been proposed as building blocks of intrinsically fault-tolerant quantum co...
We report the realization of quantum microwave circuits using hybrid superconductor-semiconductor Jo...
We report the realization of quantum microwave circuits using hybrid superconductor-semiconductor Jo...
We present an experimental study of flux- and gate-tunable nanowire transmons with state-of-the-art ...