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Absolute frequency and hyperfine structure of 127I2 transitions at 531.5 nm by precision spectroscopy using a narrow-linewidth diode laser
Haruki Sakagami, Kazumichi Yoshii, Takumi Kobayashi and Feng-Lei Hong Journal of the Optical Society of America B 37(4) 1027 (2020) https://doi.org/10.1364/JOSAB.385779
Photoelectron-photofragment coincidence spectroscopy of the dissociative photodetachment of I2- at 258 and 266 nm
Hyperfine-interaction-induced g/u mixing and its implication on the existence of the first excited vibrational level of the A+ Σu+2 state of H2+ and on the scattering length of the H + H+ collision
Narrow band noise rejection technique for laser frequency and length standards: application to frequency stabilization to I2lines near dissociation limit at 501.7 nm
Improved potentials and Born-Oppenheimer corrections by new measurements of transitions of 129I2 and 127I 129I in the B3 $\Pi_{\rm O^+_u}$ - X1 $\Sigma^+_{\rm g}$ band system
The elementary steps of the photodissociation and recombination reactions of iodine molecules enclosed in cages and channels of zeolite crystals: A femtosecond time-resolved study of the geometry effect
Excited states and photodissociation dynamics of the triiodine radical (I3)
Hyeon Choi, Travis R. Taylor, Ryan T. Bise, Alexandra A. Hoops and Daniel M. Neumark The Journal of Chemical Physics 113(19) 8608 (2000) https://doi.org/10.1063/1.1318755
Relativistic and correlated calculations on the ground, excited, and ionized states of iodine
W. A. de Jong, L. Visscher and W. C. Nieuwpoort The Journal of Chemical Physics 107(21) 9046 (1997) https://doi.org/10.1063/1.475194
The electronic transition moment function for the Bu+(3Π)↔X 1Σg+ transition in I2
The electronic transition dipole moment of the B+u→X+g transition in iodine
M. Lamrini, R. Bacis, D. Cerny, S. Churassy, P. Crozet and A. J. Ross The Journal of Chemical Physics 100(12) 8780 (1994) https://doi.org/10.1063/1.466732
On the B state of ICl molecule: hyperfine structure and hyperfine predissociation
The dissociation of molecular iodine by metastable oxygen—I. Populations of A 1μ and B 0+u iodine states through Fourier transform spectrometry analysis
Vibrationally (and rotationally) inelastic scattering characteristics for the He+I*2 system
Douglas J. Krajnovich, Kirk W. Butz, Hong Du and Charles S. Parmenter The Journal of Chemical Physics 91(12) 7725 (1989) https://doi.org/10.1063/1.457240
The Magnetic Predissociation of the B3Π0+u State of the Iodine Molecule
Masaaki Baba, Misako Kimura, Toshiyuki Tsuboi, Hajime Kato and Saburo Nagakura Bulletin of the Chemical Society of Japan 62(1) 17 (1989) https://doi.org/10.1246/bcsj.62.17
A new crossed beam approach to vibrationally inelastic scattering in neutral collision systems. State-to-state cross sections for He+I*2 (υ′=15, 25, 35) at Ec.m.=89 meV
Douglas J. Krajnovich, Kirk W. Butz, Hong Du and Charles S. Parmenter The Journal of Chemical Physics 91(12) 7705 (1989) https://doi.org/10.1063/1.457239
Iodine B3Π(0u+) state predissociation: Evaluation of the interaction mechanisms for predissociated levels of the B state
There were no pi pulses in iodine vapor: crafted pulses to compensate for Rabi-frequency inhomogeneities
W. S. Warren, L. Mueller, J. L. Bates, M. A. McCoy and M. Navratil Journal of the Optical Society of America B 3(4) 488 (1986) https://doi.org/10.1364/JOSAB.3.000488
Laser bolometric detection of long-lived and predissociating electronically excited states
Pressure broadening of the nuclear hyperfine spectrum of127I2by He and Xe
A G Astill, A J McCaffery, M J Proctor, E A Seddon and B J Whitaker Journal of Physics B: Atomic and Molecular Physics 18(18) 3745 (1985) https://doi.org/10.1088/0022-3700/18/18/015
Fluorescence lifetimes and spontaneous predissociation of I35Cl(B+, v′=1 and 2) as studied by laser excited fluorescence
Mamoru Kitamura, Tamotsu Kondow, Kozo Kuchitsu, Toshiaki Munakata and Takahiro Kasuya The Journal of Chemical Physics 82(11) 4986 (1985) https://doi.org/10.1063/1.448970
Measurement of state-to-state rotational transfer rates in collision of I2*(B 0u+, υ = 15, j) with 3He, 4He, Ne, Ar, H2, D2 and I2