Measurement of transition frequencies and hyperfine constants of molecular iodine at 520.2 nm

Fuente: arXiv
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Autores principales: Nishiyama, Akiko, Okubo, Sho, Kobayashi, Takumi, Kawasaki, Akio, Inaba, Hajime
Formato: Preprint
Publicado: 2024
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author Nishiyama, Akiko
Okubo, Sho
Kobayashi, Takumi
Kawasaki, Akio
Inaba, Hajime
author_facet Nishiyama, Akiko
Okubo, Sho
Kobayashi, Takumi
Kawasaki, Akio
Inaba, Hajime
contents We measured the transition frequencies of the hyperfine components in the four lines (P(34) 39-0, R(36) 39-0, P(33) 39-0, and R(35) 39-0) of the B-X transitions of molecular iodine at 520.2 nm. The 520.2 nm laser was generated by wavelength-converting the output of a 1560.6 nm external-cavity diode laser using a dual-pitch periodically poled lithium niobate (PPLN) waveguide. The frequencies were measured by counting the heterodyne beats between the laser stabilized at the frequencies of the hyperfine components and a frequency comb synchronized with a hydrogen maser. We determined the transition frequencies of the a1 components with relative uncertainties of 1*10-11; the uncertainty was limited by the impurity of the molecular iodine in the cell. From the measured hyperfine splitting frequencies, we calculated the hyperfine constants of these four transitions to obtain the rotational dependence of the excited-state hyperfine constants.
format Preprint
id arxiv_https___arxiv_org_abs_2409_16522
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Measurement of transition frequencies and hyperfine constants of molecular iodine at 520.2 nm
Nishiyama, Akiko
Okubo, Sho
Kobayashi, Takumi
Kawasaki, Akio
Inaba, Hajime
Chemical Physics
Atomic Physics
We measured the transition frequencies of the hyperfine components in the four lines (P(34) 39-0, R(36) 39-0, P(33) 39-0, and R(35) 39-0) of the B-X transitions of molecular iodine at 520.2 nm. The 520.2 nm laser was generated by wavelength-converting the output of a 1560.6 nm external-cavity diode laser using a dual-pitch periodically poled lithium niobate (PPLN) waveguide. The frequencies were measured by counting the heterodyne beats between the laser stabilized at the frequencies of the hyperfine components and a frequency comb synchronized with a hydrogen maser. We determined the transition frequencies of the a1 components with relative uncertainties of 1*10-11; the uncertainty was limited by the impurity of the molecular iodine in the cell. From the measured hyperfine splitting frequencies, we calculated the hyperfine constants of these four transitions to obtain the rotational dependence of the excited-state hyperfine constants.
title Measurement of transition frequencies and hyperfine constants of molecular iodine at 520.2 nm
topic Chemical Physics
Atomic Physics
url https://arxiv.org/abs/2409.16522