Fast, powerful, low-noise optical pumping of an atomic vapor with semiconductor optical amplifiers

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Main Authors: Méndez-Avalos, Diana, Meireles, Théo Louzada, Mitchell, Morgan W., Sierant, Aleksandra
Format: Preprint
Published: 2026
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author Méndez-Avalos, Diana
Meireles, Théo Louzada
Mitchell, Morgan W.
Sierant, Aleksandra
author_facet Méndez-Avalos, Diana
Meireles, Théo Louzada
Mitchell, Morgan W.
Sierant, Aleksandra
contents We use a $^{87}\text{Rb}$ atomic vapor, suitable for an optically-pumped magnetometer (OPM) in Earth-field conditions, to study the noise properties of three strategies for generating pulsed optical pumping. We compare a frequency-modulated (FM) laser, amplitude modulation (AM) via an acousto-optic modulator (AOM), and amplitude modulation via a semiconductor optical amplifier (SOA). Pumping the ensemble to operate as a Bell-Bloom OPM, and with an equal degree of spin polarization, the three methods give nearly identical sensitivity, showing that the SOA, despite being an active device, can introduce negligible additional noise. Pumping the ensemble to operate as a free-induction-decay OPM, we observe longer unpumped coherence times with the SOA-AM method than with the FM method. Finally, using the higher power available from the SOA, we demonstrate an environment-limited sensitivity of $80\text{fT}/\sqrt{\text{Hz}}$ at $600\text{Hz}$ and 200fT$200\text{fT}/\sqrt{\text{Hz}}$ at $4\text{kHz}$, one to two orders of magnitude beyond what was achievable with the other pumping methods.
format Preprint
id arxiv_https___arxiv_org_abs_2604_26721
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Fast, powerful, low-noise optical pumping of an atomic vapor with semiconductor optical amplifiers
Méndez-Avalos, Diana
Meireles, Théo Louzada
Mitchell, Morgan W.
Sierant, Aleksandra
Atomic Physics
Optics
Quantum Physics
We use a $^{87}\text{Rb}$ atomic vapor, suitable for an optically-pumped magnetometer (OPM) in Earth-field conditions, to study the noise properties of three strategies for generating pulsed optical pumping. We compare a frequency-modulated (FM) laser, amplitude modulation (AM) via an acousto-optic modulator (AOM), and amplitude modulation via a semiconductor optical amplifier (SOA). Pumping the ensemble to operate as a Bell-Bloom OPM, and with an equal degree of spin polarization, the three methods give nearly identical sensitivity, showing that the SOA, despite being an active device, can introduce negligible additional noise. Pumping the ensemble to operate as a free-induction-decay OPM, we observe longer unpumped coherence times with the SOA-AM method than with the FM method. Finally, using the higher power available from the SOA, we demonstrate an environment-limited sensitivity of $80\text{fT}/\sqrt{\text{Hz}}$ at $600\text{Hz}$ and 200fT$200\text{fT}/\sqrt{\text{Hz}}$ at $4\text{kHz}$, one to two orders of magnitude beyond what was achievable with the other pumping methods.
title Fast, powerful, low-noise optical pumping of an atomic vapor with semiconductor optical amplifiers
topic Atomic Physics
Optics
Quantum Physics
url https://arxiv.org/abs/2604.26721