[1] TEI K, SUGIMOTO D, ITO T. Technical progress in industrial COIL [J]. SPIE, 2005, 5777: 281-289.
[2] HALLADA M R, SEIFFERT S L, WALTER R F, et al.. Chemical oxygen iodine laser (COIL) for the dismantlement of nuclear facilities [J]. SPIE, 2000, 3931: 149-155.
[3] SCHULZ W G. Building a chemical laser weapon [J]. Chemical and Engineering News, 2004, 82(51): 43-44.
[4] LI Y, CHEN ZH P, WANG P H. Development status and prospect of high-power laser beam weapons [J]. Infrared and Laser Engineering., 2008, 37(9): 371-37. (in Chinese)
[5] KASPER J V V, PIMENTEL G C. Atomic iodine photo-dissociation laser [J]. Applied Physics Letters, 1964, 5(11): 231-233.
[6] KASPER J V V, PARKER J H, PIMENTEL G C. Iodine-atom laser emission in iodine photolysis [J]. J.Chem, Phys, 1965, 43: 1827-1828.
[7] DERWENT R G, KEARNS D R, THRUSH B A.The excitation of iodine by singlet molecular oxygen [J]. Chemical Physics Letters, 1970, 6(116): 532-535.
[8] MCDERMOTT W E, PCHELKIN N R, BENARD D J. An electronic transition chemical laser [J]. Applied Physics Letters, 1978, 32(8): 467-470.
[9] MIKHEYEV P A, ZAGIDULLIN M V, AZYAZOV V N. Chemical oxygen-iodine laser with external production of iodine atoms in CH3I/Ar dc glow discharge [J]. Applied Physics B, 2010(101): 7-10.
[10] AZYAZOV V N, VOROB'EV M V, VORONOV A. I. Parameters of an electric-discharge generator of iodine atoms for a chemical oxygen-iodine laser [J]. Quantum Electronics, 2009, 39(1): 84-88.
[11] AZRIEL V M, RUSIN L Y. The dynamics of direct three-body recombination of ions [J]. Russian Journal of Physical Chemistry B, 2008, 2(4): 499-511.
[12] GUDZENKO L I, SHELEPIN L A [J]. Sov. Phys. Dokl., 1965, 10, 147.
[14] CHENG L. Research on Mechanism of Producing Iodine Laser by Discharge Alkyl Iodine [D]. CDFD, 2008. (in Chinese)