International audienceWe present the characterization of a prototype surface-electrode (SE) trap as a first step towards the realization of a compact, single-ion optical clock based on Yb$^+$. The use of a SE trap will be a key factor to benefit from clean-room fabrication techniques and technological advances made in the field of quantum information processing. We succesfully demonstrated trapping at a 500 $\mu$m electrodes distance and characterized our trap in terms of lifetime and heating rate. This is to our knowledge the highest distance achieved for heating rates measurements in SE traps. This simple 5-wire design realized with simple materials yields a heating rate of $\mathbf{8\times 10^3}$ phonons/s. We provide an analysis of the ...
In this work, we present the design, fabrication, and operation of a novel surface-electrode Paul tr...
We have built and characterized a novel linear ion trap. Its small horizontal electrode separation o...
The major challenges in trapped-ion quantum computation are to scale up few-ion experiments to many ...
International audienceWe present the characterization of a prototype surface-electrode (SE) trap as ...
International audienceIn this talk, I will review our recent work on the development of a compa...
International audienceWe present our latest results obtained with a surface-electrode ion trap desig...
International audienceWe report on the progress on a single-ion optical clock that is being develope...
We demonstrate a surface-electrode ion trap fabricated using techniques transferred from the manufac...
We investigate anomalous ion-motional heating, a limitation to multiqubit quantum-logic gate fidelit...
We report heating rate measurements in a microfabricated gold-on-sapphire surface electrode ion trap...
We demonstrate confinement of individual atomic ions in a radio-frequency Paul trap with a novel geo...
Thesis: S.M., Massachusetts Institute of Technology, Department of Physics, 2015.Cataloged from PDF ...
Ions trapped above a surface electrode chip are a viable candidate for a scalable qubit architecture...
International audienceWe present the design of a compact optical clock based on the 2S1/2→2D3/2 435....
We report on the characterization of heating rates and photoinduced electric charging on a microfabr...
In this work, we present the design, fabrication, and operation of a novel surface-electrode Paul tr...
We have built and characterized a novel linear ion trap. Its small horizontal electrode separation o...
The major challenges in trapped-ion quantum computation are to scale up few-ion experiments to many ...
International audienceWe present the characterization of a prototype surface-electrode (SE) trap as ...
International audienceIn this talk, I will review our recent work on the development of a compa...
International audienceWe present our latest results obtained with a surface-electrode ion trap desig...
International audienceWe report on the progress on a single-ion optical clock that is being develope...
We demonstrate a surface-electrode ion trap fabricated using techniques transferred from the manufac...
We investigate anomalous ion-motional heating, a limitation to multiqubit quantum-logic gate fidelit...
We report heating rate measurements in a microfabricated gold-on-sapphire surface electrode ion trap...
We demonstrate confinement of individual atomic ions in a radio-frequency Paul trap with a novel geo...
Thesis: S.M., Massachusetts Institute of Technology, Department of Physics, 2015.Cataloged from PDF ...
Ions trapped above a surface electrode chip are a viable candidate for a scalable qubit architecture...
International audienceWe present the design of a compact optical clock based on the 2S1/2→2D3/2 435....
We report on the characterization of heating rates and photoinduced electric charging on a microfabr...
In this work, we present the design, fabrication, and operation of a novel surface-electrode Paul tr...
We have built and characterized a novel linear ion trap. Its small horizontal electrode separation o...
The major challenges in trapped-ion quantum computation are to scale up few-ion experiments to many ...