Model calculations of kinetic and fluid dynamic processes in diode pumped alkali lasers
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[1] Glen P. Perram,et al. Transfer between the cesium62P1/2and62P3/2levels induced by collisions with H2, HD, D2, CH4, C2H6, CF4, and C2F6 , 2011 .
[2] Richard J Goldstein,et al. Correlating equations for natural convection heat transfer between horizontal circular cylinders , 1976 .
[3] Luc Barbier,et al. Experimental study of Penning and Hornbeck-Molnar ionisation of rubidium atoms excited in a high s or d level (5d⩽nl⩽11s) , 1987 .
[4] M. K. Shaffer,et al. Photoionization in alkali lasers. , 2011, Optics express.
[5] B. Barmashenko,et al. Static diode pumped alkali lasers: Model calculations of the effects of heating, ionization, high electronic excitation and chemical reactions , 2013 .
[6] Xiaojun Xu,et al. Modeling, numerical approach, and power scaling of alkali vapor lasers in side-pumped configuration with flowing medium , 2011 .
[7] S. Seshadri. Fundamentals of plasma physics , 1973 .
[8] Gordon D. Hager,et al. A study of collisional quenching and radiation-trapping kinetics for Rb(5p) in the presence of methane and ethane using time-resolved fluorescence , 2009 .
[9] B. Barmashenko,et al. Modeling of flowing gas diode pumped alkali lasers: dependence of the operation on the gas velocity and on the nature of the buffer gas. , 2012, Optics letters.
[10] Boris V. Zhdanov,et al. Multiple laser diode array pumped Cs laser with 48W output power , 2008 .
[11] Milosevic,et al. Energy-pooling collisions in cesium: 6PJ+6PJ-->6S+(nl=7P,6D,8S,4F). , 1996, Physical review. A, Atomic, molecular, and optical physics.
[12] Mohamed S. El-Genk,et al. Dissociative recombination coefficient for low temperature equilibrium cesium plasma , 2002 .
[13] V. K. Kanz,et al. End-pumped continuous-wave alkali vapor lasers: experiment, model, and power scaling , 2004 .
[14] G. Perram,et al. A three-level analytic model for alkali metal vapor lasers: part I. Narrowband optical pumping , 2010 .
[15] Karol Waichman,et al. Toward understanding the dissociation of I2 in chemical oxygen-iodine lasers: Combined experimental and theoretical studies , 2007 .
[16] P. Teertstra. Comprehensive Review of Natural Convection in Horizontal Circular Annuli , 2004 .
[17] Andrew C. Tam,et al. Particle formation by resonant laser light in alkali-metal vapor , 1975 .
[18] R. Knize,et al. Diode-pumped 10 W continuous wave cesium laser. , 2007, Optics letters.
[19] V. A. Eroshenko,et al. Diode-pumped caesium vapour laser with closed-cycle laser-active medium circulation , 2012 .
[20] Wolfgang Rudolph,et al. Experimental and numerical modeling studies of a pulsed rubidium optically pumped alkali metal vapor laser , 2011 .
[21] G Boyadjian,et al. Laser diode array pumped continuous wave Rubidium vapor laser. , 2008, Optics express.
[22] T. Carver,et al. Optical Pumping. , 1963, Science.
[23] Qi Zhu,et al. Analysis of temperature distributions in diode-pumped alkali vapor lasers , 2010 .
[24] William F. Krupke,et al. Diode pumped alkali lasers (DPALs)—A review (rev1) , 2012 .
[25] Antonio Sasso,et al. Laser ionization and time-resolved ion collection in cesium vapor , 1985 .
[26] Boris V. Zhdanov,et al. Tunable single frequency cesium laser , 2007 .