Noise induced effects at nano-structured thin films growth during deposition in plasma-condensate devices
We perform a comprehensive study of noise-induced effects in a stochastic model of reaction-diffusion type, describing nano-structured thin films growth at condensation. We introduce an external flux of adsorbate between neighbour monoatomic layers caused by the electrical field presence near substr...
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2020-09-01
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Online Access: | https://doi.org/10.5488/CMP.23.33001 |
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doaj-268c2337083e404e8eb51380ca9dbca42020-11-25T01:53:21ZengInstitute for Condensed Matter PhysicsCondensed Matter Physics1607-324X2224-90792020-09-012333300110.5488/CMP.23.33001Noise induced effects at nano-structured thin films growth during deposition in plasma-condensate devicesV.O. Kharchenko0A.V. DvornichenkoD.O. Kharchenko We perform a comprehensive study of noise-induced effects in a stochastic model of reaction-diffusion type, describing nano-structured thin films growth at condensation. We introduce an external flux of adsorbate between neighbour monoatomic layers caused by the electrical field presence near substrate in plasma-condensate devices. We take into account that the strength of the electric field fluctuates around its mean value. We discuss a competing influence of the regular and stochastic parts of the external flux onto the dynamics of adsorptive system. It will be shown that the introduced fluctuations induce first-order phase transition in a homogeneous system, govern the pattern formation in a spatially extended system; these parts of the flux control the dynamics of the patterning, spatial order, morphology of the surface, growth law of the mean size of adsorbate islands, type and linear size of surface structures. The influence of the intensity of fluctuations onto scaling and statistical properties of the nano-structured surface is analysed in detail. This study provides an insight into the details of noise induced effects at pattern formation processes in anisotropic adsorptive systems. https://doi.org/10.5488/CMP.23.33001stochastic systemsnon-linear dynamicspattern formationfluctuation induced effects |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
V.O. Kharchenko A.V. Dvornichenko D.O. Kharchenko |
spellingShingle |
V.O. Kharchenko A.V. Dvornichenko D.O. Kharchenko Noise induced effects at nano-structured thin films growth during deposition in plasma-condensate devices Condensed Matter Physics stochastic systems non-linear dynamics pattern formation fluctuation induced effects |
author_facet |
V.O. Kharchenko A.V. Dvornichenko D.O. Kharchenko |
author_sort |
V.O. Kharchenko |
title |
Noise induced effects at nano-structured thin films growth during deposition in plasma-condensate devices |
title_short |
Noise induced effects at nano-structured thin films growth during deposition in plasma-condensate devices |
title_full |
Noise induced effects at nano-structured thin films growth during deposition in plasma-condensate devices |
title_fullStr |
Noise induced effects at nano-structured thin films growth during deposition in plasma-condensate devices |
title_full_unstemmed |
Noise induced effects at nano-structured thin films growth during deposition in plasma-condensate devices |
title_sort |
noise induced effects at nano-structured thin films growth during deposition in plasma-condensate devices |
publisher |
Institute for Condensed Matter Physics |
series |
Condensed Matter Physics |
issn |
1607-324X 2224-9079 |
publishDate |
2020-09-01 |
description |
We perform a comprehensive study of noise-induced effects in a stochastic model of reaction-diffusion type, describing nano-structured thin films growth at condensation. We introduce an external flux of adsorbate between neighbour monoatomic layers caused by the electrical field presence near substrate in plasma-condensate devices. We take into account that the strength of the electric field fluctuates around its mean value. We discuss a competing influence of the regular and stochastic parts of the external flux onto the dynamics of adsorptive system. It will be shown that the introduced fluctuations induce first-order phase transition in a homogeneous system, govern the pattern formation in a spatially extended system; these parts of the flux control the dynamics of the patterning, spatial order, morphology of the surface, growth law of the mean size of adsorbate islands, type and linear size of surface structures. The influence of the intensity of fluctuations onto scaling and statistical properties of the nano-structured surface is analysed in detail. This study provides an insight into the details of noise induced effects at pattern formation processes in anisotropic adsorptive systems. |
topic |
stochastic systems non-linear dynamics pattern formation fluctuation induced effects |
url |
https://doi.org/10.5488/CMP.23.33001 |
work_keys_str_mv |
AT vokharchenko noiseinducedeffectsatnanostructuredthinfilmsgrowthduringdepositioninplasmacondensatedevices AT avdvornichenko noiseinducedeffectsatnanostructuredthinfilmsgrowthduringdepositioninplasmacondensatedevices AT dokharchenko noiseinducedeffectsatnanostructuredthinfilmsgrowthduringdepositioninplasmacondensatedevices |
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1724991499157897216 |