Optical protection of alkali-metal atoms from spin relaxation
Optical protection of alkali-metal atoms from spin relaxation
We present an optical technique for suppressing relaxation in alkali-metal spins using a single off-resonant laser beam. The method harnesses a physical mechanism that synchronizes Larmor precession in the two hyperfine manifolds, protecting magnetic coherence from relaxation caused by spin-exchange and other hyperfine-changing collisions. We experimentally demonstrate up to a ninefold reduction in decoherence of warm cesium vapor, achieving simultaneous protection from both spin-exchange relaxation and partial depolarization from coated cell walls. The technique substantially enhances the spin precession quality factor and maintains a stable gyromagnetic ratio independent of spin polarization, even under frequent collisions. These findings offer a pathway for mitigating dominant relaxation channels in alkali-metal-based applications and experiments, particularly in anti-relaxation-coated cells.
Ori Katz、Avraham Berrebi、Mark Dikopoltsev、Or Katz
物理学
Ori Katz,Avraham Berrebi,Mark Dikopoltsev,Or Katz.Optical protection of alkali-metal atoms from spin relaxation[EB/OL].(2025-07-06)[2025-07-16].https://arxiv.org/abs/2209.12360.点此复制
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