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Effect of electronic energy loss and irradiation temperature on color-center creation in LiF and NaCl crystals irradiated with swift heavy ions

机译:电子能量损失和辐照温度对快速重离子辐照的LiF和NaCl晶体中色心形成的影响

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摘要

LiF and NaCl crystals were irradiated at 8 K and 300 K with various light and heavy ions (C, Ti, Ni, Kr, Sm, Au, Pb, and U) of kinetic energy between about 50 and 2600 MeV, providing electronic energy losses from 0.7 to 26.4 keVm. A cryostat installed at the beamline allowed in situ absorption spectroscopy and thermostimu-lated luminescence (TSL) measurements from 8 K upward. Creation of electron and hole color centers is analyzed as a function of irradiation temperature, fluence, and thermal and optical bleaching. Anion interstitials (I and H centers) were only observed in crystals irradiated at 8 K. These defects are unstable and disappear in the temperature range 10-100 K. For heavy ions (Au, U), the F-center accumulation efficiency at low fiuences is larger at 8 K than at room temperature. The opposite effect is observed for light ions (C, Ti, Ni). The results are discussed within the frame of transient heating influencing separation or annealing of point defects.
机译:用8K和300K的LiF和NaCl晶体照射动能在50到2600 MeV之间的各种轻和重离子(C,Ti,Ni,Kr,Sm,Au,Pb和U),从而提供电子能量损失从0.7至26.4 keV / nm。安装在光束线上的低温恒温器可进行8 K以上的原位吸收光谱和热刺激发光(TSL)测量。分析电子和空穴色心的产生与辐射温度,通量,热和光学漂白的关系。仅在8 K辐照的晶体中观察到阴离子间隙(I和H中心)。这些缺陷不稳定,并且在10-100 K的温度范围内消失。对于重离子(Au,U),F中心的积累效率较低8 K的影响大于室温。对于轻离子(C,Ti,Ni)观察到相反的效果。在影响点缺陷分离或退火的瞬态加热框架内讨论了结果。

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