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- W1978404232 abstract "A reaction of the form Ai+Aiensuremath{'}ensuremath{'}+ensuremath{Elzxh}ensuremath{Omega}ensuremath{rightarrow}Af+Afensuremath{'}ensuremath{'} has been referred to as light-induced collisional energy transfer (LICET). In such a reaction, atoms A and Aensuremath{'} collide in the presence of a radiation field and absorb a photon during the collision, taking them from initial states (Ai,Aiensuremath{'}ensuremath{'}) to different final states (Af,Afensuremath{'}ensuremath{'}). We calculate the final-state magnetic polarization produced in LICET for detunings ensuremath{Delta}=[(Ef+Efensuremath{'})-(Ei+Eiensuremath{'}+ensuremath{Elzxh}ensuremath{Omega})]/ensuremath{Elzxh} in the quasistatic wing: that is, for |ensuremath{Delta}|ensuremath{tau}censuremath{gg}1, where ensuremath{tau}c is the collision duration. Our results are compared with analogous depolarization rates for so-called ``optical'' collisions (reactions of the form Ai+Aiensuremath{'}ensuremath{'}+ensuremath{Elzxh}ensuremath{Omega}ensuremath{rightarrow}Ai+Afensuremath{'}ensuremath{'}). Similarities and differences between the LICET and ``optical'' collision theories are noted. Final-state LICET magnetic-state polarization is evaluated for a number of different A-Aensuremath{'} level schemes, assuming a dipole-dipole collisional interaction. Our results are shown to be in good agreement with experiment [A. D'ebarre, J. Phys. B 15, 1693 (1982)]." @default.
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- W1978404232 date "1990-07-01" @default.
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- W1978404232 title "Generation of magnetic-state polarization in light-induced collisional energy transfer: Weak-field, quasistatic-wing limit" @default.
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- W1978404232 doi "https://doi.org/10.1103/physreva.42.459" @default.
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