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000616296 245__ $$aComparative VUV Synchrotron Excitation Study of YAG: Eu and YAG: Cr Ceramics
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000616296 520__ $$aUsing synchrotron radiation, a comparative VUV excitation study of YAG ceramics doped with Eu3+ and Cr3+ ions under VUV excitation (10.5–3.7 eV) at 9 K was conducted in this work. Both ceramics exhibit distinct excitation peaks in the VUV region, indicating high-energy transitions related to the internal electronic levels of the dopants and interband transitions within the YAG matrix. For YAG:Eu, the main excitation peaks at 6–7 eV correspond to transitions within the 4f-shell of Eu3+ and Eu3+-O2− charge transfer states, showing weak dependence on the crystal field and high energy conversion efficiency. In contrast, YAG:Cr shows broad excitation bands due to transitions between levels influenced by strong crystal field interactions, resulting in lower luminescence efficiency. The study highlights the importance of crystal structure and dopant interactions in determining the spectral characteristics of YAG-based ceramics, offering potential for their application in advanced optoelectronic devices.
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000616296 7001_ $$0P:(DE-H253)PIP1105936$$aKaripbayev, Zhakyp$$b1$$eCorresponding author
000616296 7001_ $$0P:(DE-HGF)0$$aTolegenova, Akbota$$b2
000616296 7001_ $$0P:(DE-H253)PIP1106428$$aKumarbekov, Kuat K.$$b3
000616296 7001_ $$0P:(DE-HGF)0$$aNurmoldin, Erik E.$$b4
000616296 7001_ $$0P:(DE-HGF)0$$aBaizhumanov, Muratbek M.$$b5
000616296 7001_ $$0P:(DE-H253)PIP1007151$$aKotlov, Aleksei$$b6
000616296 7001_ $$0P:(DE-H253)PIP1008073$$aPopov, Anatoli$$b7$$eCorresponding author
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000616296 999C5 $$1Sharma$$2Crossref$$9-- missing cx lookup --$$a10.1007/s11051-012-0731-x$$p731 -$$tJ. Nanoparticle Res.$$v14$$y2012
000616296 999C5 $$1Ravichandran$$2Crossref$$9-- missing cx lookup --$$a10.1016/S0022-2313(96)00137-8$$p291 -$$tJ. Lumin.$$v71$$y1997
000616296 999C5 $$1Binnemans$$2Crossref$$oBinnemans 1998$$y1998
000616296 999C5 $$1Binnemans$$2Crossref$$9-- missing cx lookup --$$a10.1016/j.ccr.2015.02.015$$p1 -$$tCoord. Chem. Rev.$$v295$$y2015
000616296 999C5 $$1Dong$$2Crossref$$9-- missing cx lookup --$$a10.1016/S0925-3467(99)00120-2$$p109 -$$tOpt. Mater.$$v14$$y2000
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000616296 999C5 $$1Zych$$2Crossref$$9-- missing cx lookup --$$a10.1088/0953-8984/12/8/336$$p1947 -$$tJ. Phys. Condens. Matter.$$v12$$y2000
000616296 999C5 $$1Tanner$$2Crossref$$9-- missing cx lookup --$$a10.1088/0953-8984/19/21/216213$$p216213 -$$tJ. Phys. Condens. Matter.$$v19$$y2007
000616296 999C5 $$1Aleksanyan$$2Crossref$$9-- missing cx lookup --$$a10.1016/j.radmeas.2013.01.036$$p54 -$$tRadiat. Meas.$$v56$$y2013
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000616296 999C5 $$1Karipbayev$$2Crossref$$9-- missing cx lookup --$$a10.1002/pssb.202100415$$p2100415 -$$tPhys. Status Solidi$$v259$$y2022
000616296 999C5 $$1Babin$$2Crossref$$9-- missing cx lookup --$$a10.1002/pssb.201046245$$p239 -$$tPhys. Status Solidi (b)$$v248$$y2011
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