Cited Article:    Holt JK. Fast mass transport through sub-2-nanometer carbon nanotubes
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 Number of Citing Articles:    1 new records this week (1 in this e-mail)
 Organization ID:  3b97d1bbc1878baed0ab183d8b03130b
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AU Verbeek, MG
AF Verbeek, Martijn G.
TI Drift velocity of a Smoluchowski gas: A numerical demonstration of the
   fluctuation-dissipation theorem
SO PHYSICAL REVIEW E
LA English
DT Article
ID CARBON NANOTUBES; EQUILIBRIUM; SIMULATIONS; TRANSPORT
AB This Brief Report shows that the Smoluchowski thermostat, a stochastic
   boundary condition used to mimic a diffusive gas-wall collision,
   produces the correct stationary nonequilibrium states. The stationary
   states are generated by placing an ideal gas coupled to a Smoluchowski
   thermostat in a constant external field. It is shown by simple
   numerical simulations that the resulting drift velocity is compatible
   with the definition of the gas particle mobility, satisfying the
   well-known fluctuation-dissipation theorem. As an interesting
   application, it is shown that species that are chemically identical but
   differ in surface momentum accommodation can be separated effectively
   in the Knudsen regime.
RP Verbeek, MG, Dibbitsstr 12, NL-1689 EE Zwaag, Netherlands.
EM gustafverbeek@gmail.com
CR ACKERMAN DM, 2003, MOL SIMULAT, V29, P677, DOI
   10.1080/0892702031000103239
   ARYA G, 2003, MOL SIMULAT, V29, P697, DOI 10.1080/0892702031000103257
   BIRD RB, 2002, TRANSPORT PHENOMENA, P66
   HOLT JK, 2006, SCIENCE, V312, P1034, DOI 10.1126/science.1126298
   KENNARD EH, 1938, KINETIC THEORY GASES
   MAGINN EJ, 1993, J PHYS CHEM-US, V97, P4173
   MCQUARRIE DA, 1976, STAT MECH, P463
   SKOULIDAS AI, 2002, PHYS REV LETT, V89, ARTN 185901
   SMIT B, 2002, UNDERSTANDING MOL SI
   SMOLUCHOWSKI M, 2010, ANN PHYS-LEIPZIG, V338, P1559
   TENENBAUM A, 1982, PHYS REV A, V25, P2778
   VERBEEK MG, 2010, PHYS REV E 2, V81, ARTN 046701
NR 12
TC 0
PU AMER PHYSICAL SOC; ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1539-3755
DI 10.1103/PhysRevE.82.027701
PD AUG 24
VL 82
IS 2
PN Part 2
AR 027701
SC Physics, Fluids & Plasmas; Physics, Mathematical
GA 641XB
UT ISI:000281164000009
ER
EF
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