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Antisite defects in Ce-doped YAG (Y3AI5O_(12)): first-principles study on structures and 4f-5d transitions

机译:Ce掺杂YAG(Y3AI5O_(12))中的反位缺陷:结构和4f-5d跃迁的第一性原理研究

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摘要

The interactions between Ce~(3+) and antisite defects (AD) in YAG (Y3AI5O_(12)) are studied by means of first-principles calculations: periodic-boundary-conditions density-functional-theory for a 160 atom YAG unit cell with one Ce~(3+) and one or two ADs, and complete-active-space second-order perturbation theory for the 4f~1, 5d~1, and 6s~1 electronic manifolds of the (CeO8Al2O4)~(15-) embedded cluster. Attractive interactions are found between Ce~(3+) and the ADs. The formation of one AD is more favorable in Ce:YAG than in YAG, but the formation of a second AD is less favorable, which means that the presence of Ce tends to lower the concentration of antisite defects in YAG. The interaction between Ce~(3+) and antisite defects blueshifts the two lowest Ce~(3+) 4f → 5d transitions. This result rules out the involvement of antisite defects in the recently reported excitation of the lowest 5d → 4f emission with photons below the zero-phonon line and leaves other distorted Cerium centers for consideration, like Ce~(3+) interacting with interstitial non-stoichiometric Yttrium or with vacancies. The reasons behind the blueshifts are analyzed in detail: they are dominated by a decrease in the effective ligand-field splitting of the 5d~1 manifold, almost entirely due to the structural changes of short- and long-range and with almost negligible electronic effects from the Y and Al site exchanges.
机译:通过第一性原理研究了YAG(Y3AI5O_(12))中Ce〜(3+)与反位缺陷(AD)之间的相互作用:160原子YAG晶胞的周期边界条件密度泛函理论具有一个Ce〜(3+)和一个或两个AD,并且对(CeO8Al2O4)〜(15-)的4f〜1、5d〜1和6s〜1电子流形的完全有源空间二阶摄动理论)嵌入式集群。在Ce〜(3+)与AD之间发现了有吸引力的相互作用。在Ce:YAG中,一个AD的形成比在YAG中更有利,但是在第二个AD的形成中,第二个AD的形成则较差,这意味着Ce的存在会降低YAG中反位缺陷的浓度。 Ce〜(3+)与反位缺陷之间的相互作用使两个最低的Ce〜(3+)4f→5d跃迁发生蓝移。该结果排除了反位缺陷参与最近报道的最低零d声子线以下的光子激发的最低5d→4f发射的影响,并将其他扭曲的铈中心考虑在内,例如Ce〜(3+)与非晶体间质相互作用。化学计量的钇或有空位。详细分析了蓝移的原因:蓝移主要由5d〜1流形的有效配体场分裂减少所致,几乎完全是由于短程和长程的结构变化以及几乎可以忽略的电子效应从Y和Al网站交流。

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