We propose an atom interferometer with a nonvanishing proper time difference by combining two optical Bragg gratings serving as the two beam splitters at the entrance and the exit of the interferometer, with two strongly detuned evanescent fields providing the two mirrors in the middle. With the help of an operator approach we determine the phase shift between the two arms and compare and contrast it with the familiar Mach-Zehnder interferometer as introduced by Kasevich and Chu which shows no proper time difference
Abstract.We present a new separated beam atom interferom-eter in which the recombination of the atom...
International audienceWe derive an expression for the phase shift of an atom interferometer in a gra...
International audienceA new framework is proposed to compare and unify photon and atomoptics, which ...
We propose an atom interferometer with a nonvanishing proper time difference by combining two optica...
We compare a conventional Mach–Zehnder light-pulse atom interferometer based on diffractive mirrors ...
Light pulses have proven to be a powerful and versatile tool to implement beam splitters and mirrors...
We describe an atom interferometer to study the coherence of atoms reflected from an evanescent wave...
A novel atomic beam splitter, using reflection of atoms off an evanescent light wave, is investigate...
We experimentally and theoretically study the diffraction phase of large-momentum transfer beam spli...
The article of record as published may be found at https://doi.org/10.1088/1367-2630/ab2e8cIn this a...
We experimentally and theoretically study the diffraction phase of large-momentum transfer beam spli...
Using Bloch states to describe atomic motion, we show how to calculate the phase shifts associated t...
We have developed a novel interferometer for atom de Broglie waves, where amplitude division and rec...
International audienceWe provide a comprehensive study of ultracold-atom diffraction by an optical l...
The pulse length and off-resonance errors in an atom interferometry caused by the laser parameters d...
Abstract.We present a new separated beam atom interferom-eter in which the recombination of the atom...
International audienceWe derive an expression for the phase shift of an atom interferometer in a gra...
International audienceA new framework is proposed to compare and unify photon and atomoptics, which ...
We propose an atom interferometer with a nonvanishing proper time difference by combining two optica...
We compare a conventional Mach–Zehnder light-pulse atom interferometer based on diffractive mirrors ...
Light pulses have proven to be a powerful and versatile tool to implement beam splitters and mirrors...
We describe an atom interferometer to study the coherence of atoms reflected from an evanescent wave...
A novel atomic beam splitter, using reflection of atoms off an evanescent light wave, is investigate...
We experimentally and theoretically study the diffraction phase of large-momentum transfer beam spli...
The article of record as published may be found at https://doi.org/10.1088/1367-2630/ab2e8cIn this a...
We experimentally and theoretically study the diffraction phase of large-momentum transfer beam spli...
Using Bloch states to describe atomic motion, we show how to calculate the phase shifts associated t...
We have developed a novel interferometer for atom de Broglie waves, where amplitude division and rec...
International audienceWe provide a comprehensive study of ultracold-atom diffraction by an optical l...
The pulse length and off-resonance errors in an atom interferometry caused by the laser parameters d...
Abstract.We present a new separated beam atom interferom-eter in which the recombination of the atom...
International audienceWe derive an expression for the phase shift of an atom interferometer in a gra...
International audienceA new framework is proposed to compare and unify photon and atomoptics, which ...