English

A large-momentum-transfer Raman atom interferometer without $k$-reversal

Atomic Physics 2025-07-21 v3

Abstract

We present a Raman atom interferometer using large momentum transfer without reversing the direction of the effective wavevector (kk-reversal). More specifically, we use a microwave π\pi/2 pulse to manipulate the spin state of 87^{87}Rb atoms before applying a Raman light π\pi pulse to achieve 4k\hbar k momentum transfer per Raman light pulse. A microwave π\pi pulse in the middle of the interferometer sequence reverses the spin states, which allows closing of the interferometer arms by the same Raman light π\pi pulses without propagation reversal. We present a proof-of-principle demonstration of a 4k\hbar k large-momentum-transfer (LMT) atom interferometer and discuss its scalability. Our results extend the scope of using LMT atom optics.

Keywords

Cite

@article{arxiv.2502.03334,
  title  = {A large-momentum-transfer Raman atom interferometer without $k$-reversal},
  author = {Guanchen Peng and Bryony Lanigan and R. Shah and J. Lim and A. Kaushik and J. P. Cotter and E. A. Hinds and B. E. Sauer},
  journal= {arXiv preprint arXiv:2502.03334},
  year   = {2025}
}

Comments

11 pages, 5 figures + 4 pages supplemental

R2 v1 2026-06-28T21:33:41.469Z