. . . "79" . "Setv\u00EDn, M." . . "1098-0121" . . "Heterogeneous nucleation and adatom detachment at one-dimensional growth of In on Si(100)-2 x 1"@en . "P(GA202/06/0049), S, Z(AV0Z10100520), Z(MSM0021620834)" . . "5"^^ . . . "16" . . . "RIV/68378271:_____/09:00331417!RIV10-AV0-68378271" . "atomic chains; surface growth; nanostructures; indium; silicon; adatom diffusion; STM; kinetic MC; simulation"@en . "Growth of atomic indium chains - 1D islands - on the Si(100)-2x1 surface was observed by scanning tunneling microscopy at room temperature and simulated by means of a kinetic Monte Carlo method. Density of indium islands and island size distribution were obtained for various deposition rates and coverage. Important role of C-type defects at adsorption of metal atoms was observed. Measured growth characteristics were simulated using a microscopic model with anisotropic surface diffusion and forbidden zones along the metal chains. An analysis of experimental and simulation data shows that detachment of indium adatoms from the chains substantially influences a growth scenario and results in monotonously decreasing chain length distribution function at low coverage. Diffusion barriers determined from the simulations correspond to almost isotropic diffusion of indium adatoms on the surface."@en . "1"^^ . "Heterogeneous nucleation and adatom detachment at one-dimensional growth of In on Si(100)-2 x 1"@en . . . . "Javorsk\u00FD, J." . "[F9B5CBDB71E0]" . . . "RIV/68378271:_____/09:00331417" . . "Sobot\u00EDk, P." . . "317047" . . "Heterogeneous nucleation and adatom detachment at one-dimensional growth of In on Si(100)-2 x 1" . "O\u0161t'\u00E1dal, I." . "Kotrla, Miroslav" . . . "US - Spojen\u00E9 st\u00E1ty americk\u00E9" . . . . "Growth of atomic indium chains - 1D islands - on the Si(100)-2x1 surface was observed by scanning tunneling microscopy at room temperature and simulated by means of a kinetic Monte Carlo method. Density of indium islands and island size distribution were obtained for various deposition rates and coverage. Important role of C-type defects at adsorption of metal atoms was observed. Measured growth characteristics were simulated using a microscopic model with anisotropic surface diffusion and forbidden zones along the metal chains. An analysis of experimental and simulation data shows that detachment of indium adatoms from the chains substantially influences a growth scenario and results in monotonously decreasing chain length distribution function at low coverage. Diffusion barriers determined from the simulations correspond to almost isotropic diffusion of indium adatoms on the surface." . "9"^^ . . "000265945200102" . "Heterogeneous nucleation and adatom detachment at one-dimensional growth of In on Si(100)-2 x 1" . "Physical Review. B" . .