2012
DOI: 10.1088/0004-637x/749/1/23
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MONTE CARLO CALCULATION OF THE TRANSLATIONAL RELAXATION OF SUPERTHERMAL H ATOMS IN THERMAL H2GAS

Abstract: A simple and reliable method to study the translational relaxation of "hot" H atoms following their production by chemical mechanisms is proposed. The problem is relevant to interstellar medium, shocks, photospheres, and atmospheric entry problems. It is shown that the thermalization of H atoms can be conveniently studied by the Monte Carlo method, including the thermal distribution of background molecules, and sets the basis for further investigations. The transport cross section is determined by the inversio… Show more

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Cited by 8 publications
(5 citation statements)
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“…The type of collision was stochastically determined using the probability of the jth collisional process N i g i σ ij (g i )/ν, where σ ij is the cross section of the jth process in collisions between an ion and molecule of the ith species. The equations for the ion velocity after collisions are given, for instance, in [14,23]. We used the random number generator presented in [24].…”
Section: The Methods Of Simulation and Its Verification And Validationmentioning
confidence: 99%
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“…The type of collision was stochastically determined using the probability of the jth collisional process N i g i σ ij (g i )/ν, where σ ij is the cross section of the jth process in collisions between an ion and molecule of the ith species. The equations for the ion velocity after collisions are given, for instance, in [14,23]. We used the random number generator presented in [24].…”
Section: The Methods Of Simulation and Its Verification And Validationmentioning
confidence: 99%
“…This effect has been well studied for superthermal atoms. The role of superthermal atoms in chemical reactions has been studied for the reactions of energetic O atoms with other atmospheric species [8,9], for reactions of superthermal N atoms with O 2 to produce NO molecules (see, for instance [10,11]), for chain reactions in H 2 :F 2 mixtures [12,13] and for the abstraction of H atoms from H 2 O molecules in collisions with energetic H atoms [14]. In [15][16][17][18], the mechanisms of superthermal atom production were considered in a high-voltage nanosecond discharge initiated in combustible mixtures.…”
Section: Introductionmentioning
confidence: 99%
“…The neutral H atom solver is based on the same MC solver applied to ions in the PIC/MCC model, which allows us to include accurately the effect of the thermal gas velocity distribution in the ion kinetics [24,45], and neutral atoms [17,46]. This method, as shown in [45] amounts to using the Neumann rejection technique [47] to select the collision pair for an ion-neutral collision with the correct probability given by the kinetic theory and thereby leading to the correct distribution of collision times also for slow particles in the thermal velocity field of neutrals.…”
Section: Kinetics Of H Atomsmentioning
confidence: 99%
“…As reported in table 3, the expression for the momentum transfer cross section of H-H 2 collision of [17] is used.…”
Section: Kinetics Of H Atomsmentioning
confidence: 99%
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