Momentum-resolved study of an array of one-dimensional strongly phase-fluctuating Bose gases
Nicole Fabbri, David M. Clement, L. Fallani, C. Fort, M. Inguscio
Abstract
Open-access reader
Nicole Fabbri, David M. Clement, L. Fallani, C. Fort, M. Inguscio
Abstract
Open-access reader
We investigate the coherence properties of an array of one-dimensional Bose gases with short-scale phase fluctuations. The momentum distribution is measured using Bragg spectroscopy, and an effective coherence length of the whole ensemble is defined. In addition, we propose and demonstrate that time-of-flight absorption imaging can be used as a simple probe to directly measure the coherence length of one-dimensional gases in the regime where phase fluctuations are strong. This method is suitable for future studies such as investigating the effect of disorder on the phase coherence.
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We investigate the coherence properties of an array of one-dimensional Bose gases with short-scale phase fluctuations. The momentum distribution is measured using Bragg spectroscopy, and an effective coherence length of the whole ensemble is defined. In addition, we propose and demonstrate that time-of-flight absorption imaging can be used as a simple probe to directly measure the coherence length of one-dimensional gases in the regime where phase fluctuations are strong. This method is suitable for future studies such as investigating the effect of disorder on the phase coherence.
Key concepts: Coherence (philosophical gambling strategy), Phase coherence, Coherence length, Physics, Phase (matter), Momentum (technical analysis), Measure (data warehouse), Spectroscopy