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Amy Mullin

Affiliations: 
University of Maryland, College Park, College Park, MD 
Area:
time-resolved laser spectroscopy of chemical processes and molecular collisions
Website:
http://www.chem.umd.edu/research/facultyprofiles/amymullin
Google:
"Amy Mullin"
Mean distance: 8.41
 
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Publications

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Mullin AS, Guo H, McCoy AB. (2019) Viewpoint: New Physical Insights from Kinetics Studies. The Journal of Physical Chemistry. A. 123: 3057
Ogden HM, Michael TJ, Murray MJ, et al. (2019) The effect of CO rotation from shaped pulse polarization on reactions that form C. Physical Chemistry Chemical Physics : Pccp
Murray MJ, Ogden HM, Mullin AS. (2018) Importance of rotational adiabaticity in collisions of COsuper rotors with Ar and He. The Journal of Chemical Physics. 148: 084310
Murray MJ, Ogden HM, Mullin AS. (2017) Anisotropic kinetic energy release and gyroscopic behavior of CO2 super rotors from an optical centrifuge. The Journal of Chemical Physics. 147: 154309
Murray MJ, Ogden HM, Toro C, et al. (2016) Impulsive Collision Dynamics of CO Super Rotors from an Optical Centrifuge. Chemphyschem : a European Journal of Chemical Physics and Physical Chemistry
Mullin AS, Fourkas JT. (2015) The International Year of Light and the Chemistry Classroom. The Journal of Physical Chemistry Letters. 6: 3882-3
Murray MJ, Ogden HM, Toro C, et al. (2015) State-Specific Collision Dynamics of Molecular Super Rotors with Oriented Angular Momentum. The Journal of Physical Chemistry. A
Echebiri GO, Smarte MD, Walters WW, et al. (2014) Performance of a high-resolution mid-IR optical-parametric-oscillator transient absorption spectrometer. Optics Express. 22: 14885-95
Du J, Sassin NA, Havey DK, et al. (2013) Full state-resolved energy gain profiles of CO2 from collisions with highly vibrationally excited molecules. II. Energy-dependent pyrazine (E = 32,700 and 37,900 cm(-1)) relaxation. The Journal of Physical Chemistry. A. 117: 12104-15
Toro C, Liu Q, Echebiri GO, et al. (2013) Inhibited rotational quenching in oriented ultra-high rotational states of CO2 Molecular Physics. 111: 1892-1901
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