Electromagnetically induced transparency with magnetically-induced $ΔF=0, m_F=0 \rightarrow m_F=0$ probe transition

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Hauptverfasser: Sargsyan, Armen, Sarkisyan, David, Papoyan, Aram
Format: Preprint
Veröffentlicht: 2024
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author Sargsyan, Armen
Sarkisyan, David
Papoyan, Aram
author_facet Sargsyan, Armen
Sarkisyan, David
Papoyan, Aram
contents Interest in magnetically induced (MI) transitions of alkali metal atoms is caused by the fact that their intensities can exceed the intensities of regular atomic transitions in a wide range of magnetic field (200 - 4000 G). The goal of this work was to form and study, for the first time, an electromagnetically induced transparency (EIT) resonance in a strong magnetic field using a probe radiation tuned to |Fg = F; mF = 0-> Fe = F; mF = 0> MI transition, which is forbidden in zero magnetic field. Two narrow-band linearly-polarized cw diode lasers were used to form a EIT resonance on a lambda-type system of Cs atomic D2 line in a strong transverse magnetic field (up to 1000 G). The resonance was formed in Cs atomic vapor nanocell with the atomic vapor column thickness of 850 nm.
format Preprint
id arxiv_https___arxiv_org_abs_2402_18924
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Electromagnetically induced transparency with magnetically-induced $ΔF=0, m_F=0 \rightarrow m_F=0$ probe transition
Sargsyan, Armen
Sarkisyan, David
Papoyan, Aram
Atomic Physics
Interest in magnetically induced (MI) transitions of alkali metal atoms is caused by the fact that their intensities can exceed the intensities of regular atomic transitions in a wide range of magnetic field (200 - 4000 G). The goal of this work was to form and study, for the first time, an electromagnetically induced transparency (EIT) resonance in a strong magnetic field using a probe radiation tuned to |Fg = F; mF = 0-> Fe = F; mF = 0> MI transition, which is forbidden in zero magnetic field. Two narrow-band linearly-polarized cw diode lasers were used to form a EIT resonance on a lambda-type system of Cs atomic D2 line in a strong transverse magnetic field (up to 1000 G). The resonance was formed in Cs atomic vapor nanocell with the atomic vapor column thickness of 850 nm.
title Electromagnetically induced transparency with magnetically-induced $ΔF=0, m_F=0 \rightarrow m_F=0$ probe transition
topic Atomic Physics
url https://arxiv.org/abs/2402.18924