In the endeavour to make quantum computers a reality, integrated superconducting circuits have become a promising architecture. A major challenge of this approach is decoherence originating from spurious atomic tunneling defects at the interfaces of qubit electrodes, which may resonantly absorb energy from the qubit's oscillating electric field and reduce the qubit's energy relaxation time $T_1$. Here, we show that qubit coherence can be improved by tuning dominating defects away from the qubit resonance using an applied DC-electric field. We demonstrate a method that optimizes the applied field bias and enhances the average qubit $T_1$ time by 23%. We also discuss how local gate electrodes can be implemented in superconducting quantum proc...
We show that it is theoretically possible to use higher energy levels for storing and controlling tw...
We show that it is theoretically possible to use higher energy levels for storing and controlling tw...
Great interest revolves around the development of new strategies to efficiently store and manipulate...
In the past two decades, one of the fascinating subjects in quantum physics has been quantum bits (q...
Quantum computers can potentially achieve an exponential speedup versus classical computers on certa...
Quantum battery (QB) is the miniature energy storage and release device and plays a crucial role in ...
A quantum computer will potentially solve far-reaching problems which are currently intractable on a...
Electrically controllable quantum coherence in quantum dot clusters and arrays based on graphene str...
Parasitic two-level-system (TLS) defects are one of the major factors limiting the coherence times o...
Solid-state quantum coherent devices are quickly progressing. Superconducting circuits, for instance...
The flip-flop qubit, encoded in the states with antiparallel donor-bound electron and donor nuclear ...
Quantum processors based on integrated nanoscale silicon spin qubits are a promising platform for hi...
Single-electron transistors have been proposed to be used as a read-out device for Cooper pair charg...
Spin qubit systems are one of the promising candidates for quantum computing. The quantum dot (QD) a...
Quantum sensing and computation can be realized with superconducting microwave circuits. Qubits are ...
We show that it is theoretically possible to use higher energy levels for storing and controlling tw...
We show that it is theoretically possible to use higher energy levels for storing and controlling tw...
Great interest revolves around the development of new strategies to efficiently store and manipulate...
In the past two decades, one of the fascinating subjects in quantum physics has been quantum bits (q...
Quantum computers can potentially achieve an exponential speedup versus classical computers on certa...
Quantum battery (QB) is the miniature energy storage and release device and plays a crucial role in ...
A quantum computer will potentially solve far-reaching problems which are currently intractable on a...
Electrically controllable quantum coherence in quantum dot clusters and arrays based on graphene str...
Parasitic two-level-system (TLS) defects are one of the major factors limiting the coherence times o...
Solid-state quantum coherent devices are quickly progressing. Superconducting circuits, for instance...
The flip-flop qubit, encoded in the states with antiparallel donor-bound electron and donor nuclear ...
Quantum processors based on integrated nanoscale silicon spin qubits are a promising platform for hi...
Single-electron transistors have been proposed to be used as a read-out device for Cooper pair charg...
Spin qubit systems are one of the promising candidates for quantum computing. The quantum dot (QD) a...
Quantum sensing and computation can be realized with superconducting microwave circuits. Qubits are ...
We show that it is theoretically possible to use higher energy levels for storing and controlling tw...
We show that it is theoretically possible to use higher energy levels for storing and controlling tw...
Great interest revolves around the development of new strategies to efficiently store and manipulate...