Numerical Simulation of Photoelectric Emission from a Nano-structured Surface
A new method of X-ray photoelectron spectra processing based on a target model with a stochastic surface layer is proposed. On the basis of this model, X-ray photoelectron spectra of multilayer multicomponent metallic targets with an inhomogeneous surface layer are obtained for various probing angle...
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Veröffentlicht in: | Physics of atomic nuclei 2023-12, Vol.86 (10), p.2344-2351 |
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container_title | Physics of atomic nuclei |
container_volume | 86 |
creator | Lukiantsev, D. S. Lubenchenko, A. V. Ivanov, D. A. Budaev, V. P. Pavlov, I. N. Pavlov, O. N. Lubenchenko, O. I. |
description | A new method of X-ray photoelectron spectra processing based on a target model with a stochastic surface layer is proposed. On the basis of this model, X-ray photoelectron spectra of multilayer multicomponent metallic targets with an inhomogeneous surface layer are obtained for various probing angles considering surface shading effects. A layer-by-layer phase profile of metallic samples is obtained using the advanced method of surface analysis based on angle-resolved X-ray photoelectron spectroscopy. The results are validated by atomic force microscopy. |
doi_str_mv | 10.1134/S1063778823100290 |
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The results are validated by atomic force microscopy.</description><subject>Analysis</subject><subject>Atomic force microscopy</subject><subject>Mathematical models</subject><subject>Modeling of Nanostructures</subject><subject>Multilayers</subject><subject>Numerical analysis</subject><subject>Particle and Nuclear Physics</subject><subject>Photoelectric emission</subject><subject>Photoelectricity</subject><subject>Photoelectrons</subject><subject>Physics</subject><subject>Physics and Astronomy</subject><subject>Plasma physics</subject><subject>Simulation methods</subject><subject>Surface analysis (chemical)</subject><subject>Surface layers</subject><subject>X ray photoelectron spectroscopy</subject><subject>X ray spectra</subject><subject>X-ray spectroscopy</subject><issn>1063-7788</issn><issn>1562-692X</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2023</creationdate><recordtype>article</recordtype><recordid>eNp1kUFLwzAUx4soOKcfwFvBk4fOpFnT5DjG1MGcYhW8hdc0mR1tM5MU9NubUUGGSA4v5P_7vTx4UXSJ0QRjMr0pMKIkzxlLCUYo5egoGuGMpgnl6dtxuIc42een0ZlzW4QwZhkaRQ_rvlW2ltDERd32DfjadLHR8dO78UY1SvqQxou2dm6faGvaGOI1dCZx3vbS91ZVcdFbDVKdRycaGqcufuo4er1dvMzvk9Xj3XI-WyWSTLFPpiVQ0EhiVRLQQCrNNZZI55UEVkKWMamUlpxCpXEFmjOeVTkliDJeYSjJOLoa-u6s-eiV82JretuFL0XKSU6ynGEWqMlAbaBRou608RZkOJVqa2k6pevwPstZRhDLOQ3C9YEQGK8-_QZ658SyeD5k8cBKa5yzSoudrVuwXwIjsV-J-LOS4KSD4wLbbZT9Hft_6RvlM44e</recordid><startdate>20231201</startdate><enddate>20231201</enddate><creator>Lukiantsev, D. 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Nuclei</stitle><date>2023-12-01</date><risdate>2023</risdate><volume>86</volume><issue>10</issue><spage>2344</spage><epage>2351</epage><pages>2344-2351</pages><issn>1063-7788</issn><eissn>1562-692X</eissn><abstract>A new method of X-ray photoelectron spectra processing based on a target model with a stochastic surface layer is proposed. On the basis of this model, X-ray photoelectron spectra of multilayer multicomponent metallic targets with an inhomogeneous surface layer are obtained for various probing angles considering surface shading effects. A layer-by-layer phase profile of metallic samples is obtained using the advanced method of surface analysis based on angle-resolved X-ray photoelectron spectroscopy. The results are validated by atomic force microscopy.</abstract><cop>Moscow</cop><pub>Pleiades Publishing</pub><doi>10.1134/S1063778823100290</doi><tpages>8</tpages></addata></record> |
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subjects | Analysis Atomic force microscopy Mathematical models Modeling of Nanostructures Multilayers Numerical analysis Particle and Nuclear Physics Photoelectric emission Photoelectricity Photoelectrons Physics Physics and Astronomy Plasma physics Simulation methods Surface analysis (chemical) Surface layers X ray photoelectron spectroscopy X ray spectra X-ray spectroscopy |
title | Numerical Simulation of Photoelectric Emission from a Nano-structured Surface |
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