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Ion-plasma treatment of Cd1 − x Zn x Te (x ∼ 0.04) single crystals and application of antireflection diamond-like carbon films

N.I. KlyuiLashkarev Institute of Semiconductor Physics, National Academy of Sciences of Ukraine, pr. Nauki 45, Kiev, 03028, UkraineV.B. LozinskiiLashkarev Institute of Semiconductor Physics, National Academy of Sciences of Ukraine, pr. Nauki 45, Kiev, 03028, UkraineA. N. LukyanovLashkarev Institute of Semiconductor Physics, National Academy of Sciences of Ukraine, Kiev, UkraineV.A. MorozhenkoLashkarev Institute of Semiconductor Physics, National Academy of Sciences of Ukraine, pr. Nauki 45, Kiev, 03028, UkraineР. К. СавкінаLashkarev Institute of Semiconductor Physics, National Academy of Sciences of Ukraine, pr. Nauki 45, Kiev, 03028, UkraineФ. Ф. СизовLashkarev Institute of Semiconductor Physics, National Academy of Sciences of Ukraine, pr. Nauki 45, Kiev, 03028, UkraineA. B. SmirnovLashkarev Institute of Semiconductor Physics, National Academy of Sciences of Ukraine, pr. Nauki 45, Kiev, 03028, UkraineV. A. DeriglazovLashkarev Institute of Semiconductor Physics, National Academy of Sciences of Ukraine, pr. Nauki 45, Kiev, 03028, Ukraine
2012en
ABI

Аннотация

The influence of ion-plasma treatment of Cd1 − x Zn x Te (x ∼ 0.04) single crystals, which precedes the deposition of an antireflection coating (a diamond-like a-C: H: N film) on the optical properties of the resulting structure, is investigated. Treatment is carried out in an argon, nitrogen, and hydrogen plasma. As follows from the optical properties of the a-C: H: N/Cd1 − x Zn x Te, the structure treated in an argon plasma offers the highest transmission. A model of the optical system is proposed that takes into account the formation of transition layers after ion-plasma treatment and the effect of the type of ion on their characteristics. The absorption spectra of the a-C: H: N/Cd1 − x Zn x Te system are analyzed, and bands assigned to the stretching and bending vibrations of C-H bonds, as well as to C-C and C=O bonds, are revealed. The presence of these bonds should be taken into account in designing and synthesizing these optical coatings.

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