Atom interferometry using sigma(+)-sigma(-) Raman transitions between vertical bar F=1, m(F) = -/+ 1 > and vertical bar F=2, m(F) = +/- 1 >

PHYSICAL REVIEW A(2022)

引用 1|浏览7
暂无评分
摘要
We report on the experimental demonstration of a horizontal accelerometer based on atom interferometry using counterpropagative Raman transitions between the states vertical bar F = 1, m(F) = -/+ 1 > and vertical bar F = 2, m(F) = +/- 1 > of Rb-87. Compared to the vertical bar F = 1, m(F) = 0 > <-> vertical bar F = 2, m(F) = 0 > transition usually used in atom interferometry, our scheme presents the advantages of having only a single counterpropagating transition allowed in a retroreflected geometry, using the same polarization configuration as the magneto-optical trap, and allowing the control of the atom trajectory with magnetic forces. We demonstrate horizontal acceleration measurement in a close-to-zero velocity regime using a single-diffraction Raman process with a short-term sensitivity of 25 x 10(-5) m s(-2) HZ(-)(1/)(2) and resolution down to 3.8 x 10(-6) m s(-2) at an integration time of 3300 s. We discuss specific features of the technique such as spontaneous emission, light shifts, and effects of magnetic field inhomogeneities. We finally give possible applications of this technique in metrology or for cold-atom inertial sensors dedicated to onboard applications.
更多
查看译文
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要