In this work, we present the design, fabrication, and operation of a novel surface-electrode Paul trap that produces a radio-frequency-null along the axis perpendicular to the trap surface. This arrangement enables control of the vertical trapping potential and consequentially the ion-electrode distance via dc-electrodes only. We demonstrate confinement of single 40Ca+ ions at heights between 50 μm and 300 μm above planar copper-coated aluminum electrodes. Laser-cooling and coherent operations are performed on both the planar and vertical motional modes. This architecture provides a platform for precision electric-field noise detection, trapping of vertical ion strings without excess micromotion, and may have applications for scalable quant...
We use a single-ion electric-field noise sensor in combination with in situ surface treatment and an...
Thesis: S.M., Massachusetts Institute of Technology, Department of Physics, 2015.Cataloged from PDF ...
Electric-field noise is a major limiting factor in the performance of ion traps and other quantum de...
We describe the design, fabrication, and operation of a novel surface-electrode Paul trap that produ...
We investigate anomalous ion-motional heating, a limitation to multiqubit quantum-logic gate fidelit...
The major challenges in trapped-ion quantum computation are to scale up few-ion experiments to many ...
We demonstrate confinement of individual atomic ions in a radio-frequency Paul trap with a novel geo...
In this work, we present a novel method to couple any two vibrational modes of a single trapped ion,...
In modern ion quantum technology the fields of quantum information and microfabrication are being me...
We measure and characterize anomalous motional heating of an atomic ion confined in the lowest quant...
Quantum computing is a promising candidate in the field of advanced computing. This technology is po...
International audienceWe present a model for the scaling laws of the electric field noise spectral d...
All surfaces generate electric-field noise, yet the physical origins of this noise are not well unde...
The prospect of building a quantum information processor underlies many recent advances ion trap fab...
Electric-field noise from ion-trap electrode surfaces can limit the fidelity of multiqubit entanglin...
We use a single-ion electric-field noise sensor in combination with in situ surface treatment and an...
Thesis: S.M., Massachusetts Institute of Technology, Department of Physics, 2015.Cataloged from PDF ...
Electric-field noise is a major limiting factor in the performance of ion traps and other quantum de...
We describe the design, fabrication, and operation of a novel surface-electrode Paul trap that produ...
We investigate anomalous ion-motional heating, a limitation to multiqubit quantum-logic gate fidelit...
The major challenges in trapped-ion quantum computation are to scale up few-ion experiments to many ...
We demonstrate confinement of individual atomic ions in a radio-frequency Paul trap with a novel geo...
In this work, we present a novel method to couple any two vibrational modes of a single trapped ion,...
In modern ion quantum technology the fields of quantum information and microfabrication are being me...
We measure and characterize anomalous motional heating of an atomic ion confined in the lowest quant...
Quantum computing is a promising candidate in the field of advanced computing. This technology is po...
International audienceWe present a model for the scaling laws of the electric field noise spectral d...
All surfaces generate electric-field noise, yet the physical origins of this noise are not well unde...
The prospect of building a quantum information processor underlies many recent advances ion trap fab...
Electric-field noise from ion-trap electrode surfaces can limit the fidelity of multiqubit entanglin...
We use a single-ion electric-field noise sensor in combination with in situ surface treatment and an...
Thesis: S.M., Massachusetts Institute of Technology, Department of Physics, 2015.Cataloged from PDF ...
Electric-field noise is a major limiting factor in the performance of ion traps and other quantum de...