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Analysis of Thermoluminescence Glow Peaks in beta-Irradiated TlGaSeS Crystals
Date
2016-06-01
Author
Hasanlı, Nızamı
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https://hdl.handle.net/11511/70879
Journal
Acta Physica Polonica A
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Analysis of Thermoluminescence Glow Peaks in beta-Irradiated TlGaSeS Crystals
IŞIK, MEHMET; YILDIRIM, TACETTİN; Gasanly, N. M. (Institute of Physics, Polish Academy of Sciences, 2016-06-01)
Thermoluminescence properties of TlGaSeS layered single crystals were investigated in the temperature range of 280-720 K. Thermoluminescence glow curve exhibited three peaks with maximum temperatures of approximate to 370, 437, and 490 K. Curve fitting, initial rise and peak shape methods were used to determine the activation energies of the trapping centers. All applied methods resulted with energies around 0.82, 0.91, and 0.99 eV. Dose dependence of the thermoluminescence intensity was also examined for t...
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This study concentrates on the temperature dependence of the Raman intensities for the lattice modes in ammonium halides (NH4Cl and NH4Br) close to phase transitions, We predict their intensities using the results of a shell model for the Raman polarizability within the framework of an Ising pseudospin-phonon coupled model.
Analysis of Transient Laminar Forced Convection of Nanofluids in Circular Channels
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Analysis of the Hall effect in TlGaTe2 single crystals
QASRAWI, ATEF FAYEZ HASAN; Hasanlı, Nızamı (IOP Publishing, 2009-06-10)
The electrical resistivity and Hall coefficient of p-type TlGaTe2 crystals were measured in the temperature range of 110-320 K. The electrical resistivity, charge carrier density and Hall mobility data for the crystals have been analyzed by means of existing theories and models to determine the extrinsic energy levels, the carrier effective mass, the donor and acceptor concentrations and the dominant scattering mechanism in the crystal as well. The analysis of the temperature-dependent electrical resistivit...
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The aim of this work is to produce X-ray laser source from a plasma produced by focusing a pulsed laser beam on a solid target. Preformed Molybdenum plasma is created by using Nd:YAG laser pulses with a pulse duration 6 ns and pulse intensity 5.09x1011 W/cm2. Detailed simulations of Ni-like Mo X-ray laser media are undertaken using the EHYBRID code which is a hydrodynamic code. X-ray resonance lines between 25 Å and 40 Å emitted from the molybdenum plasma have been obtained and analysed. EHYBRID code also g...
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N. Hasanlı, “Analysis of Thermoluminescence Glow Peaks in beta-Irradiated TlGaSeS Crystals,”
Acta Physica Polonica A
, pp. 1165–1168, 2016, Accessed: 00, 2021. [Online]. Available: https://hdl.handle.net/11511/70879.