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The Formation of Nanodimensional Structures on the Surface of p-CdTe Crystals Exposed to a Single Radiation Pulse from a Ruby Laser
The formation of nanodimensional structures on the surface of p-CdTe crystals has been studied as a function of the radiation-power density of a laser under a single irradiation dose. The best conditions for laser irradiation of the crystals are found. Under these conditions, a homogeneous structure...
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Published in: | Semiconductors (Woodbury, N.Y.) N.Y.), 2005-01, Vol.39 (9), p.1028 |
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container_issue | 9 |
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container_title | Semiconductors (Woodbury, N.Y.) |
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creator | Baidullaeva, A. Vlasenko, A.I. Cuzan, L.F. Litvin, O.S. Mozol', P.E. |
description | The formation of nanodimensional structures on the surface of p-CdTe crystals has been studied as a function of the radiation-power density of a laser under a single irradiation dose. The best conditions for laser irradiation of the crystals are found. Under these conditions, a homogeneous structure with a period of 100 nm is formed. The lateral size of the structure is {approx}(19-20) nm, and the average height is {approx}(3.40-9.38) nm. It is found that periodicity manifests itself clearly in one crystallography direction. |
doi_str_mv | 10.1134/1.2042592 |
format | article |
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The best conditions for laser irradiation of the crystals are found. Under these conditions, a homogeneous structure with a period of 100 nm is formed. The lateral size of the structure is {approx}(19-20) nm, and the average height is {approx}(3.40-9.38) nm. It is found that periodicity manifests itself clearly in one crystallography direction.</abstract><cop>United States</cop><doi>10.1134/1.2042592</doi></addata></record> |
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source | Springer Nature |
subjects | CADMIUM TELLURIDES CRYSTAL STRUCTURE CRYSTALLOGRAPHY CRYSTALS LASER RADIATION MATERIALS SCIENCE MORPHOLOGY NANOSTRUCTURES OPTICAL PROPERTIES PERIODICITY POWER DENSITY RADIATION DOSES RUBY LASERS SEMICONDUCTOR MATERIALS |
title | The Formation of Nanodimensional Structures on the Surface of p-CdTe Crystals Exposed to a Single Radiation Pulse from a Ruby Laser |
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