Effect of the Temperature Gradient on the X-ray Diffraction Spectrum of a Quartz Crystal
- Autores: Mkrtchyan A.R.1,2, Potylitsyn A.P.2, Vukolov A.V.2, Novokshonov A.I.2, Gogolev A.S.2, Amiragyan R.V.1, Movsisyan A.E.1
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Afiliações:
- Institute of Applied Problems of Physics
- Tomsk Polytechnical University
- Edição: Volume 11, Nº 6 (2017)
- Páginas: 1109-1112
- Seção: Article
- URL: https://journals.rcsi.science/1027-4510/article/view/194425
- DOI: https://doi.org/10.1134/S1027451017050111
- ID: 194425
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Resumo
The spectra of X-ray diffraction from the reflecting atomic plane (1 0 1̅ 1) of a quartz single crystal are studied in Laue geometry under the action of temperature gradient on a BDER-KI-11K spectrometer with a resolution of 300 eV on the Am241 line of 17.74 keV. The temperature gradient leads to an increase in the intensity of the diffracted beam depending on the heating temperature. It is shown that the intensity of X-ray diffraction in Laue geometry may increase at a temperature gradient of 250°C/cm by two orders of magnitude in comparison with the uniform temperature state of the crystal. The rocking curve of the reflected beam is obtained at a fixed observation angle of 6° and a specified temperature gradient. It is demonstrated that the intensity of the reflected beam increases with increasing temperature gradient (to a certain value), while the spectral width of the reflection line remains constant and is governed by the energy resolution of the spectrometer. A further growth in the temperature gradient leads to an increase in the spectral width of the reflection line with decreasing intensity of the reflected beam.
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Sobre autores
A. Mkrtchyan
Institute of Applied Problems of Physics; Tomsk Polytechnical University
Email: pap@interact.phtd.tpu.ru
Armênia, ul. Grach’ya Nersisyan 25, Yerevan, 375014; pr. Lenina 30, Tomsk, 634050
A. Potylitsyn
Tomsk Polytechnical University
Autor responsável pela correspondência
Email: pap@interact.phtd.tpu.ru
Rússia, pr. Lenina 30, Tomsk, 634050
A. Vukolov
Tomsk Polytechnical University
Email: pap@interact.phtd.tpu.ru
Rússia, pr. Lenina 30, Tomsk, 634050
A. Novokshonov
Tomsk Polytechnical University
Email: pap@interact.phtd.tpu.ru
Rússia, pr. Lenina 30, Tomsk, 634050
A. Gogolev
Tomsk Polytechnical University
Email: pap@interact.phtd.tpu.ru
Rússia, pr. Lenina 30, Tomsk, 634050
R. Amiragyan
Institute of Applied Problems of Physics
Email: pap@interact.phtd.tpu.ru
Armênia, ul. Grach’ya Nersisyan 25, Yerevan, 375014
A. Movsisyan
Institute of Applied Problems of Physics
Email: pap@interact.phtd.tpu.ru
Armênia, ul. Grach’ya Nersisyan 25, Yerevan, 375014
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