Artykuły w czasopismach na temat „Tm thermoluminescence”
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Oliveira Junot, Danilo, Marcos A. P. Chagas, and Divanízia Do Nascimento Souza. "ANÁLISE TERMOLUMINESCENTE DE COMPÓSITOS DE CaSO4 ATIVADO COM TERRAS RARAS." Eclética Química Journal 38, no. 1 (2017): 90. http://dx.doi.org/10.26850/1678-4618eqj.v38.1.2013.p90-94.
Pełny tekst źródłaGuo, Jing Yuan, Qiang Tang, Li Gao, et al. "Influence of Sintering Temperature on the Thermoluminescence Spectra of MgSO4 Doped with RE(Tm,Dy) and Mn." Applied Mechanics and Materials 664 (October 2014): 57–61. http://dx.doi.org/10.4028/www.scientific.net/amm.664.57.
Pełny tekst źródłaPradhan, A. S., and J. Rassow. "Radiation induced thermoluminescence in CaF2:Tm detectors." Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment 255, no. 1-2 (1987): 234–37. http://dx.doi.org/10.1016/0168-9002(87)91108-9.
Pełny tekst źródłaLiu, Qi, Henglei Chen, Guangwen Feng, and Qun Jing. "Thermoluminescence properties of novel KSrPO4: Tm phosphor." Journal of Alloys and Compounds 1014 (February 2025): 178806. https://doi.org/10.1016/j.jallcom.2025.178806.
Pełny tekst źródłaEtafo, Nelson Oshogwue, Carlos Rodriguez Garcia, Tzipatly A. Esquivel-Castro, Manuel I. León-Madrid, Alejandro Santibañez, and Jorge Oliva. "The Effect of a Yb Co-Dopant on the Blue Upconversion and Thermoluminescent Emission of SrLaAlO4:Yb3+,Tm3+ Phosphors." Coatings 13, no. 6 (2023): 1003. http://dx.doi.org/10.3390/coatings13061003.
Pełny tekst źródłaKoide, Sohya, Naoki Kawano, Takumi Kato, et al. "Scintillation and thermoluminescence characteristics of Tm-doped BaCaBO3F." Optical Materials 126 (April 2022): 112222. http://dx.doi.org/10.1016/j.optmat.2022.112222.
Pełny tekst źródłaRasheedy, Mahmoud Said, Fumio Nishimura, and Toshihiro Ichimori. "On the thermoluminescence emission spectra of CaF2: Tm." Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 61, no. 1 (1991): 67–71. http://dx.doi.org/10.1016/0168-583x(91)95562-r.
Pełny tekst źródłaLuo, Hongde, Adrie J. J. Bos, Anna Dobrowolska, and Pieter Dorenbos. "Low-temperature VUV photoluminescence and thermoluminescence of UV excited afterglow phosphor Sr3AlxSi1−xO5:Ce3+,Ln3+ (Ln = Er, Nd, Sm, Dy and Tm)." Physical Chemistry Chemical Physics 17, no. 23 (2015): 15419–27. http://dx.doi.org/10.1039/c5cp01710f.
Pełny tekst źródłaHSU, Pin-Chieh, Pao-Shan WEND, Shih-Hai LI, Su-Fua WANG, and Fu-Dong CHANG. "Effect of Teflon Covers on Thermoluminescence of CaF2:Tm." Japanese Journal of Health Physics 34, no. 2 (1999): 179–86. http://dx.doi.org/10.5453/jhps.34.179.
Pełny tekst źródłaJacob, M., P. Meissner, and J. Rassow. "Infrared Thermoluminescence Signals of TLD-300 (CaF2:Tm) Detectors." Radiation Protection Dosimetry 33, no. 1-4 (1990): 291–94. http://dx.doi.org/10.1093/oxfordjournals.rpd.a080813.
Pełny tekst źródłaJacob, M., P. Meissner, and J. Rassow. "Infrared Thermoluminescence Signals of TLD-300 (CaF2:Tm) Detectors." Radiation Protection Dosimetry 33, no. 1-4 (1990): 291–94. http://dx.doi.org/10.1093/rpd/33.1-4.291.
Pełny tekst źródłaFreire de Souza, Luiza, and Divanízia N. Souza. "PRODUÇÃO DE DOSÍMETROS TERMOLUMINESCENTES À BASE DE MgB4O7: Dy e MgB4O7:Tm." Eclética Química Journal 38, no. 1 (2017): 101. http://dx.doi.org/10.26850/1678-4618eqj.v38.1.2013.p101-108.
Pełny tekst źródłaKása, I., R. Chobola, P. Mell, S. Szakács, and A. Kerekes. "Preparation and investigation of thermoluminescence properties of CaSO4:Tm,Cu." Radiation Protection Dosimetry 123, no. 1 (2006): 32–35. http://dx.doi.org/10.1093/rpd/ncl088.
Pełny tekst źródłaLiu, Liyan, Yanli Zhang, Jingquan Hao, Chengyu Li, Shubin Wang, and Qiang Su. "Thermoluminescence studies of LiBa2B5O10:RE3+ (RE=Dy, Tb and Tm)." Journal of Physics and Chemistry of Solids 68, no. 9 (2007): 1745–48. http://dx.doi.org/10.1016/j.jpcs.2007.04.020.
Pełny tekst źródłaSingh, Moirangthem Nara, Anurup Gohain Barua, and R. K. Gartia. "Thermoluminescence studies of Tm doped nanocrystalline Calcium Aluminate (CaAl2O4:Tm3+)." Optik 228 (February 2021): 166151. http://dx.doi.org/10.1016/j.ijleo.2020.166151.
Pełny tekst źródłaZaharchuk, Ivan, Mihail Danilkin, Aleksandr Selyukov, Ol'ga Ivkina, and Irina Mosyagina. "Luminescent Dosimetric Materials Based on Magnesium Tetraborate for Proton Beam Metrology." ANRI, no. 3 (August 20, 2023): 45–55. http://dx.doi.org/10.37414/2075-1338-2023-114-3-45-55.
Pełny tekst źródłaM., Dahab, Khamis F., and E. Arafah D. "Effect of Storage on the TL Properties of Glow Curve of Synthesis: Dy, Tm and Dy/Tm Doped CaSO4." Asian Journal of Physical and Chemical Sciences 2, no. 3 (2017): 1–14. https://doi.org/10.9734/AJOPACS/2017/34938.
Pełny tekst źródłaGuo Jing-Yuan, Tang Qiang, Tang Hua-Ming, Zhang Chun-Xiang, Luo Da-Ling, and Liu Xiao-Wei. "Thermoluminescence and optical stimulated luminescence trap parameters of LiMgPO4: Tm, Tb." Acta Physica Sinica 66, no. 10 (2017): 107802. http://dx.doi.org/10.7498/aps.66.107802.
Pełny tekst źródłaTownsend, P. D., R. A. Wood, W. S. Brocklesby, R. S. Brown, and J. E. Townsend. "Thermoluminescence Evidence for Laser Induced Crystallisation of Tm Doped Germanosilicate Fibres." Radiation Protection Dosimetry 65, no. 1 (1996): 363–68. http://dx.doi.org/10.1093/oxfordjournals.rpd.a031662.
Pełny tekst źródłaJiang, L. H., Y. L. Zhang, C. Y. Li, J. Q. Hao, and Q. Su. "Thermoluminescence studies of LiSrBO3:RE3+ (RE=Dy, Tb, Tm and Ce)." Applied Radiation and Isotopes 68, no. 1 (2010): 196–200. http://dx.doi.org/10.1016/j.apradiso.2009.10.001.
Pełny tekst źródłaStern, S. H., J. L. Price, D. G. Simons, et al. "RBS and XPS analyses of phosphor packages for laser-heat thermoluminescence dosimetry." Journal of Materials Research 6, no. 7 (1991): 1574–79. http://dx.doi.org/10.1557/jmr.1991.1574.
Pełny tekst źródłaAzorin, J., C. Furetta, and A. Gutierrez. "Evaluation of the kinetic parameters of CaF2:Tm (TLD-300) thermoluminescence dosemeters." Journal of Physics D: Applied Physics 22, no. 3 (1989): 458–64. http://dx.doi.org/10.1088/0022-3727/22/3/014.
Pełny tekst źródłaOtto, T., L. Gindraux, and M. Strasser. "The thermoluminescence efficiency of Li2B4O7:Cu and of CaSO4:Tm for photons." Radiation Protection Dosimetry 144, no. 1-4 (2010): 234–38. http://dx.doi.org/10.1093/rpd/ncq503.
Pełny tekst źródłaLewandowski, A. C., J. H. Barkyoumb, and V. K. Mathur. "Thermoluminescence Emission, Excitation and Stimulation Spectra of CaSO4:Dy and CaSO4:Tm." Radiation Protection Dosimetry 65, no. 1 (1996): 281–86. http://dx.doi.org/10.1093/oxfordjournals.rpd.a031641.
Pełny tekst źródłaLewandowski, A. C., and V. K. Mathur. "High Dose and Phototransferred Thermoluminescence in CaSO4, CaSO4:Dy, and CaSO4:Tm." Radiation Protection Dosimetry 66, no. 1 (1996): 213–16. http://dx.doi.org/10.1093/oxfordjournals.rpd.a031719.
Pełny tekst źródłaOlko, Pawel. "Calcium fluoride, CaF2:Tm (TLD-300) as a thermoluminescence one hit detector." Radiation Measurements 29, no. 3-4 (1998): 383–89. http://dx.doi.org/10.1016/s1350-4487(98)00022-5.
Pełny tekst źródłaBacci, C., P. Bernardini, A. Di Domenico, C. Furetta, and B. Rispoli. "Analysis of thermoluminescence kinetics of CaF2(Tm) peaks with glow curve deconvolution." Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment 286, no. 1-2 (1990): 295–300. http://dx.doi.org/10.1016/0168-9002(90)90234-w.
Pełny tekst źródłaChakrabarti, K., J. Sharma, V. K. Mathur, and R. J. Abbundi. "X-ray photoelectron spectroscopy, optical absorption and thermoluminescence studies in CaSO4: Tm." Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 69, no. 2-3 (1992): 322–26. http://dx.doi.org/10.1016/0168-583x(92)96025-t.
Pełny tekst źródłaBiswas, Rabiul, and Ashok Singhvi. "Anomalous fading and crystalline structure: Studies on individual chondrules from the same parent body." Geochronometria 40, no. 4 (2013): 250–57. http://dx.doi.org/10.2478/s13386-013-0114-9.
Pełny tekst źródłaMeissner, P., M. Jacob, and J. Rassow. "Infrared and visible thermoluminescence signals of Tm-doped CaF2measured by a semiconductor photodiode." Physics in Medicine and Biology 33, no. 12 (1988): 1407–15. http://dx.doi.org/10.1088/0031-9155/33/12/006.
Pełny tekst źródłaMeissner, P., M. Jacob, and J. Rassow. "Infrared and visible thermoluminescence signals of Tm-doped CaF2measured by a semiconductor photodiode." Physics in Medicine and Biology 33, no. 5 (1988): 613–16. http://dx.doi.org/10.1088/0031-9155/33/5/009.
Pełny tekst źródłaLakshmanan, A. R., and S. S. Tiwari. "Optical Absorption and Thermoluminescence Studies in CaF2:Tm Crystals Irradiated at Room Temperature." Radiation Protection Dosimetry 47, no. 1-4 (1993): 243–46. http://dx.doi.org/10.1093/oxfordjournals.rpd.a081742.
Pełny tekst źródłaLakshmanan, A. R., and S. S. Tiwari. "Optical Absorption and Thermoluminescence Studies in CaF2:Tm Crystals Irradiated at Room Temperature." Radiation Protection Dosimetry 47, no. 1-4 (1993): 243–46. http://dx.doi.org/10.1093/rpd/47.1-4.243.
Pełny tekst źródłaBulcar, K., N. Kucuk, M. Topaksu, and N. Can. "Thermoluminescence spectra of Tm doped ZnB2O4 phosphor prepared via a wet-chemical synthesis." Applied Radiation and Isotopes 147 (May 2019): 177–81. http://dx.doi.org/10.1016/j.apradiso.2019.03.016.
Pełny tekst źródłaWahib, Norfadira, Siti Nurasiah Mat Nawi, Nurul Najua Zulkepely, et al. "Thermoluminescence Response of Germanium-Doped Silica (SiO2) Optical Fibers Subjected to X-Ray Irradiation." Advanced Materials Research 1133 (January 2016): 434–38. http://dx.doi.org/10.4028/www.scientific.net/amr.1133.434.
Pełny tekst źródłaMammadov, S., M. Gurbanov, L. Ahmadzade, and A. Abishov. "Thermoluminescence properties of nano-alumina with two different particle sizes." Physics and Chemistry of Solid State 24, no. 3 (2023): 584–88. http://dx.doi.org/10.15330/pcss.24.3.584-588.
Pełny tekst źródłaHSU, Pin-Chieh, Li-Chen TSAI, Huan NIU, and Pao-Shan WENG. "Response of Thermoluminescence Dosimeter CaF2: Tm to Low-Level Proton Beams Using Rutherford Backscattering." Japanese Journal of Health Physics 36, no. 2 (2001): 131–36. http://dx.doi.org/10.5453/jhps.36.131.
Pełny tekst źródłaSohrabi, M., M. Jafarizadeh, and F. Abbasisiar. "Sensitive CaSO4:Dy and CaSO4:Tm Thermoluminescence Detectors Produced from Natural Crystals of Iran." Radiation Protection Dosimetry 78, no. 4 (1998): 313–16. http://dx.doi.org/10.1093/oxfordjournals.rpd.a032364.
Pełny tekst źródłaCunha Filho, P. Linhares, R. L. A. T. Menezes, and W. M. Azevedo. "Thermoluminescence characterization of the Cu(Tb,Tm)-12CaO-7AL2O3 compounds obtained by combustion synthesis." Radiation Measurements 71 (December 2014): 65–68. http://dx.doi.org/10.1016/j.radmeas.2014.03.008.
Pełny tekst źródłaWang, Y., N. Can, and P. D. Townsend. "Influence of Li dopants on thermoluminescence spectra of CaSO4 doped with Dy or Tm." Journal of Luminescence 131, no. 9 (2011): 1864–68. http://dx.doi.org/10.1016/j.jlumin.2011.04.042.
Pełny tekst źródłaIsik, M., N. M. Gasanly, L. G. Gasanova, and A. Z. Mahammadov. "Thermoluminescence study in Cu3Ga5S9 single crystals: Application of heating rate and Tm–Tstop methods." Journal of Luminescence 199 (July 2018): 334–38. http://dx.doi.org/10.1016/j.jlumin.2018.03.076.
Pełny tekst źródłaZhang, Lin, Chen Shu Li, Hiroshi Yamada, and Chao Nan Xu. "A Novel Blue-Violet Emitting Mechanoluminescent Material with Calcium Aluminosilicate." Key Engineering Materials 388 (September 2008): 277–80. http://dx.doi.org/10.4028/www.scientific.net/kem.388.277.
Pełny tekst źródłaHarooni, S., M. Zahedifar, E. Sadeghi, and Z. Ahmadian. "A NEW THERMOLUMINESCENCE GENERAL ORDER GLOW CURVE FIT FUNCTION CONSIDERING THERMAL QUENCHING EFFECT." Radiation Protection Dosimetry 187, no. 1 (2019): 103–7. http://dx.doi.org/10.1093/rpd/ncz146.
Pełny tekst źródłaShinsho, Kiyomitsu, Yuta Suzuki, Kazumasa Harada, Yusuke Yamamoto, and Akio Urushiyama. "Multilevel based analysis of the thermoluminescence of CaSO4:RE (RE=Tm, Dy, Tb, and Sm)." Journal of Applied Physics 99, no. 4 (2006): 043506. http://dx.doi.org/10.1063/1.2173033.
Pełny tekst źródłaHorowitz, Y. S., D. Satinger, D. Yossian, et al. "Ionisation Density Effects in the Thermoluminescence of TLD-100:Computerised Tm-Tstop Glow Curve Analysis." Radiation Protection Dosimetry 84, no. 1 (1999): 239–42. http://dx.doi.org/10.1093/oxfordjournals.rpd.a032727.
Pełny tekst źródłaBos, A. J. J., R. W. De Jong, and K. Meijvogel. "Effects of type of radiation on glow curve and thermoluminescence emission spectrum of CaF2:Tm." Radiation Measurements 24, no. 4 (1995): 401–5. http://dx.doi.org/10.1016/1350-4487(95)91005-s.
Pełny tekst źródłaAbishov, Aqshin, Sahib Mammadov, Muslim Gurbanov, Ahmad Ahadov, and Aybeniz Ahadova. "Thermoluminescence Behavior and Kinetic Analysis of Quartz Under Gamma Irradiation." East European Journal of Physics, no. 4 (December 8, 2024): 373–77. https://doi.org/10.26565/2312-4334-2024-4-43.
Pełny tekst źródłaGieszczyk, Wojciech, Barbara Marczewska, Mariusz Kłosowski, et al. "Thermoluminescence Enhancement of LiMgPO4 Crystal Host by Tb3+ and Tm3+ Trivalent Rare-Earth Ions Co-doping." Materials 12, no. 18 (2019): 2861. http://dx.doi.org/10.3390/ma12182861.
Pełny tekst źródłaKása, I. "Dependence of Thermoluminescence Response of CaSO4:Dy and CaSO4:Tm on Grain Size and Activator Concentration." Radiation Protection Dosimetry 33, no. 1-4 (1990): 299–302. http://dx.doi.org/10.1093/oxfordjournals.rpd.a080815.
Pełny tekst źródłaMizuguchi, K., and Y. Fukuda. "Thermoluminescence and Thermally Stimulated Exoelectron Emission of Ca3(PO4)2:Dy and Ca3(PO4)2:Tm." Radiation Protection Dosimetry 84, no. 1 (1999): 301–5. http://dx.doi.org/10.1093/oxfordjournals.rpd.a032744.
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