We investigate anomalous ion-motional heating, a limitation to multiqubit quantum-logic gate fidelity in trapped-ion systems, as a function of ion-electrode separation. Using a multizone surface-electrode trap in which ions can be held at five discrete distances from the metal electrodes, we measure power-law dependencies of the electric-field noise experienced by the ion on the ion-electrode distance d. We find a scaling of approximately d^{−4} regardless of whether the electrodes are at room temperature or cryogenic temperature, despite the fact that the heating rates are approximately two orders of magnitude smaller in the latter case. Through auxiliary measurements using the application of noise to the electrodes, we rule out technical ...
In this work, we present a novel method to couple any two vibrational modes of a single trapped ion,...
Electric noise from metallic surfaces is a major obstacle towards quantum applications with trapped ...
We describe an ex-situ surface-cleaning procedure that is shown to reduce motional heating from ion-...
Motional heating of ions in microfabricated traps is one of the open challenges hindering experiment...
International audienceWe present a model for the scaling laws of the electric field noise spectral d...
We model electric field noise from fluctuating patch potentials on conducting surfaces by taking int...
Thesis: S.B., Massachusetts Institute of Technology, Department of Physics, 2016.Cataloged from PDF ...
We measure and characterize anomalous motional heating of an atomic ion confined in the lowest quant...
Electric-field noise from ion-trap electrode surfaces can limit the fidelity of multiqubit entanglin...
Electric-field noise is a major limiting factor in the performance of ion traps and other quantum de...
In this work, we present the design, fabrication, and operation of a novel surface-electrode Paul tr...
Motional heating of ions in microfabricated traps is one of the open challenges hindering experiment...
Electric-field noise near surfaces is a common problem in diverse areas of physics, and a limiting f...
We report heating rate measurements in a microfabricated gold-on-sapphire surface electrode ion trap...
We demonstrate the use of a single trapped ion as a sensor to probe electric-field noise from interc...
In this work, we present a novel method to couple any two vibrational modes of a single trapped ion,...
Electric noise from metallic surfaces is a major obstacle towards quantum applications with trapped ...
We describe an ex-situ surface-cleaning procedure that is shown to reduce motional heating from ion-...
Motional heating of ions in microfabricated traps is one of the open challenges hindering experiment...
International audienceWe present a model for the scaling laws of the electric field noise spectral d...
We model electric field noise from fluctuating patch potentials on conducting surfaces by taking int...
Thesis: S.B., Massachusetts Institute of Technology, Department of Physics, 2016.Cataloged from PDF ...
We measure and characterize anomalous motional heating of an atomic ion confined in the lowest quant...
Electric-field noise from ion-trap electrode surfaces can limit the fidelity of multiqubit entanglin...
Electric-field noise is a major limiting factor in the performance of ion traps and other quantum de...
In this work, we present the design, fabrication, and operation of a novel surface-electrode Paul tr...
Motional heating of ions in microfabricated traps is one of the open challenges hindering experiment...
Electric-field noise near surfaces is a common problem in diverse areas of physics, and a limiting f...
We report heating rate measurements in a microfabricated gold-on-sapphire surface electrode ion trap...
We demonstrate the use of a single trapped ion as a sensor to probe electric-field noise from interc...
In this work, we present a novel method to couple any two vibrational modes of a single trapped ion,...
Electric noise from metallic surfaces is a major obstacle towards quantum applications with trapped ...
We describe an ex-situ surface-cleaning procedure that is shown to reduce motional heating from ion-...