Solid-state quantum coherent devices are quickly progressing. Superconducting circuits, for instance, have already been used to demonstrate prototype quantum processors comprising a few tens of quantum bits. This development also revealed that a major part of decoherence and energy loss in such devices originates from a bath of parasitic material defects. However, neither the microscopic structure of defects nor the mechanisms by which they emerge during sample fabrication are understood. Here, we present a technique to obtain information on locations of defects relative to the thin film edge of the qubit circuit. Resonance frequencies of defects are tuned by exposing the qubit sample to electric fields generated by electrodes surrounding t...
Advances in materials science and engineering have played a central role in the development of class...
Recent progress with microfabricated quantum devices has revealed that an ubiquitous source of noise...
We describe a method by which the decoherence time of a solid-state qubit may be measured. The qubit...
Despite tremendous progress of quantum computation with superconducting qubits, up-scaling for pract...
Tunneling defects in disordered materials form spurious two-level systems which are a major source o...
In the endeavour to make quantum computers a reality, integrated superconducting circuits have becom...
Parasitic two-level-system (TLS) defects are one of the major factors limiting the coherence times o...
Quantum sensing and computation can be realized with superconducting microwave circuits. Qubits are ...
The anomalous low-temperature properties of glasses arise from intrinsic excitable entities, so-call...
Parasitic two-level tunnelling systems originating from structural material defects affect the funct...
Tunneling defects in disordered materials form spurious two-level systems which are a major source o...
A quantum computer will potentially solve far-reaching problems which are currently intractable on a...
Quantum computation is a fascinating field that combines novel physics with improvements in computat...
Advances in materials science and engineering have played a central role in the development of class...
In disordered solids, two-level atomic-tunneling systems are present in large quantity. Only recentl...
Advances in materials science and engineering have played a central role in the development of class...
Recent progress with microfabricated quantum devices has revealed that an ubiquitous source of noise...
We describe a method by which the decoherence time of a solid-state qubit may be measured. The qubit...
Despite tremendous progress of quantum computation with superconducting qubits, up-scaling for pract...
Tunneling defects in disordered materials form spurious two-level systems which are a major source o...
In the endeavour to make quantum computers a reality, integrated superconducting circuits have becom...
Parasitic two-level-system (TLS) defects are one of the major factors limiting the coherence times o...
Quantum sensing and computation can be realized with superconducting microwave circuits. Qubits are ...
The anomalous low-temperature properties of glasses arise from intrinsic excitable entities, so-call...
Parasitic two-level tunnelling systems originating from structural material defects affect the funct...
Tunneling defects in disordered materials form spurious two-level systems which are a major source o...
A quantum computer will potentially solve far-reaching problems which are currently intractable on a...
Quantum computation is a fascinating field that combines novel physics with improvements in computat...
Advances in materials science and engineering have played a central role in the development of class...
In disordered solids, two-level atomic-tunneling systems are present in large quantity. Only recentl...
Advances in materials science and engineering have played a central role in the development of class...
Recent progress with microfabricated quantum devices has revealed that an ubiquitous source of noise...
We describe a method by which the decoherence time of a solid-state qubit may be measured. The qubit...