Rotation dependence of electric quadrupole hyperfine interaction in the ground state of molecular iodine by high-resolution laser spectroscopy
Author:
Publisher
The Optical Society
Subject
Atomic and Molecular Physics, and Optics,Statistical and Nonlinear Physics
Reference40 articles.
1. Hyperfine Interactions in Molecular Iodine
2. Hyperfine structure of the R(98), 58-1 line of 127I2 at 514.5 nm
3. High precision saturation spectroscopy of 127I2 with argon lasers at 5 145 Å and 5 017 Å : I — Main resonances
4. IODINE HYPERFINE STRUCTURE OBSERVED IN SATURATED ABSORPTION AT 633 nm
5. Helium–neon laser stabilized by saturated absorption in iodine at 612 nm
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1. Optical Frequency References at 1542 nm: Precision Spectroscopy of the R(106)50-0, R(100)49-0, R(84)47-0, R(59)45-0, P(82)47-0, and P(71)46-0 Lines of 127I2 at 514 nm;Photonics;2024-08-19
2. Precision spectroscopy of iodine absorption lines near the 1S0-3P2 transition of Yb atoms at 507 nm;Japanese Journal of Applied Physics;2024-03-01
3. Rotation dependence of v′ = 44 excited-state hyperfine constants obtained via precise measurements of the hyperfine structures of 127I2 lines near 514 nm;The European Physical Journal D;2023-07
4. Frequency references based on molecular iodine for the study of Yb atoms using the 1S0 – 3P1 intercombination transition at 556 nm;Optics Express;2022-12-07
5. Hyperfine structure and absolute frequency of 127I2 transitions at 514 nm for wavelength standards at 1542 nm;Journal of the Optical Society of America B;2022-07-29
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