State-to-state, rotational energy-transfer dynamics in crossed supersonic jets: A high-resolution IR absorption method

被引:11
作者
Schiffman, A
Chapman, WB
Nesbitt, DJ
机构
[1] NATL INST STAND & TECHNOL,JOINT INST LAB ASTROPHYS,BOULDER,CO 80309
[2] UNIV COLORADO,DEPT CHEM & BIOCHEM,BOULDER,CO 80309
关键词
D O I
10.1021/jp952708j
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
A high-resolution IR absorption method is presented for the experimental determination of state-to-state, integral and differential cross sections for rotationally inelastic energy transfer. An infrared chromophore, cooled into its lowest rotational state(s) in a pulsed supersonic expansion, is rotationally excited with low collision probability by a gas pulse from a second supersonic jet. The initial and final populations of the infrared absorber are monitored as a function of J state and of Doppler detuning, via direct absorption of narrow bandwidth light from a continuously tunable, CW infrared laser. The scattered and unscattered species are detected with Doppler-limited spectral resolution (less than or similar to 0.01 cm(-1)), providing quantum-state selectivity not attainable with time-of-flight energy-loss methods. The infrared-based probe also permits study of a much wider class of absorbing species inaccessible to ultraviolet/visible laser-induced fluorescence (LIF) or resonance-enhanced multiphoton ionization (REMPI) methods. From fractional IR absorbances and Beer's law, the column-integrated number densities in each jet are measured directly, which allows absolute, state-to-state, integral cross sections to be determined. Furthermore, the correspondence between the molecular velocity and the observed Doppler shift can be used to extract state-to-state differential cross sections from the high-resolution line shapes. Details of the experimental technique are demonstrated via sample studies of state-to-state integral and differential scattering in rare-gas collisions with CH4.
引用
收藏
页码:3402 / 3413
页数:12
相关论文
共 77 条
[41]   INVERSION OF EXPERIMENTAL-DATA TO GENERATE STATE-TO-STATE CROSS-SECTIONS FOR ROVIBRATIONALLY INELASTIC-SCATTERING OF CO2 BY HOT HYDROGEN-ATOMS [J].
KREUTZ, TG ;
KHAN, FA ;
FLYNN, GW .
JOURNAL OF CHEMICAL PHYSICS, 1990, 92 (01) :347-357
[42]  
KURZEL R, 1977, J CHEM PHYS, V53, P3293
[43]   ENERGY-TRANSFER IN A2-SIGMA+ OH .2. VIBRATIONAL [J].
LENGEL, RK ;
CROSLEY, DR .
JOURNAL OF CHEMICAL PHYSICS, 1978, 68 (12) :5309-5324
[44]   PREFERENTIAL INPLANE ROTATIONAL-EXCITATION OF H2O (001) BY TRANSLATIONAL-TO-VIBRATIONAL TRANSFER FROM 2.2-EV H-ATOMS [J].
LOVEJOY, CM ;
GOLDFARB, L ;
LEONE, SR .
JOURNAL OF CHEMICAL PHYSICS, 1992, 96 (09) :7180-7182
[45]   STATE-TO-STATE INTEGRAL CROSS-SECTIONS FOR THE INELASTIC-SCATTERING OF CH(X2-PI) + HE - ROTATIONAL RAINBOW AND ORBITAL ALIGNMENT [J].
MACDONALD, RG ;
LIU, K .
JOURNAL OF CHEMICAL PHYSICS, 1989, 91 (02) :821-838
[46]   POTENTIAL ANISOTROPY EFFECTS ON INELASTIC DIFFERENTIAL CROSS-SECTIONS [J].
MALIK, DJ ;
SECREST, D ;
BUCK, U .
CHEMICAL PHYSICS LETTERS, 1980, 75 (03) :465-467
[47]   EXPERIMENTAL PROOF OF A [DELTA-M] LESS-THAN-J PROPENSITY RULE IN ROTATIONALLY INELASTIC DIFFERENTIAL SCATTERING [J].
MATTHEUS, A ;
FISCHER, A ;
ZIEGLER, G ;
GOTTWALD, E ;
BERGMANN, K .
PHYSICAL REVIEW LETTERS, 1986, 56 (07) :712-715
[48]   ROTATIONAL TRANSFER, AN ANGULAR-MOMENTUM MODEL [J].
MCCAFFERY, AJ ;
ALWAHABI, ZT ;
OSBORNE, MA ;
WILLIAMS, CJ .
JOURNAL OF CHEMICAL PHYSICS, 1993, 98 (06) :4586-4602
[49]  
MCCAFFERY AJ, 1986, ANNU REV PHYS CHEM, V37, P223
[50]   COUNTERPROPAGATING PULSED MOLECULAR-BEAM SCATTERING OF NH3-AR .1. STATE-RESOLVED INTEGRAL CROSS-SECTIONS [J].
MEYER, H .
JOURNAL OF CHEMICAL PHYSICS, 1994, 101 (08) :6686-6696