首页> 外文会议>Feofilov Symposium on Spectroscopy of Crystals Activated by Rare-Earth and Transitional-Metal Ions >Nonequilibrium terahertz phonons in spatially confined aluminum oxide crystalline materials studied by the Cr3+ fluorescent phonon detector
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Nonequilibrium terahertz phonons in spatially confined aluminum oxide crystalline materials studied by the Cr3+ fluorescent phonon detector

机译:在空间限制氧化铝晶体材料中,CR3 +荧光声子探测器的空间氧化铝晶体材料非QuibiBribrium

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The propagation of nonequilibrium terahertz acoustic phonons in dense $alpha@-Al$-2$/O$- 3$/ ceramics with grain size approximately 10 micrometer is studied. Phonons are generated by the heat pulse technique and optical detection of 0.87 THz (29 cm$+$MIN@1$/) phonons via the Cr$+3$PLU$/ impurity ions fluorescence is used. The diffusive propagation of phonons from heater to optical detector is observed. Experimental results show that the mean free path of phonons is about 150 micrometers and thus is significantly larger than the grain size. These results are compared with computer calculations (by M. B. Melnikov) considering refraction and reflection of plane acoustic waves at the interfaces of disoriented grains in acoustic mismatch approximation. The dynamics of terahertz phonons generated at LHT by laser excitation in sol-gel technology grown monolithic transparent highly porous $gamma@-Al$-2$/O$-3$/ samples was studied using the phonon-induced anti-Stokes FLN spectra of Cr$+3$PLU$/ impurity ions ($+2$/E - $+4$/A$-2$/ lines). The generated phonon distribution besides long-living (approximately tens of ms) thermalized Planckian distribution contains essentially nonequilibrium vibrational excitations peak around approximately ega $APEQ 0.6 THz (20 cm$+$MIN@1$/) with high occupation numbers $OBAR@n$- approximately ega$/ and decay time approximately 1 ms. Discussed are the possible nature of these vibrations with frequencies approximately ega which are consistent with acoustic size-resonance modes of $gamma@-Al$-2$/O$-3$/ nanometer scale spherical microcrystals which form the material and the possible role of these vibrations in spectral dynamics of optically generated phonons.
机译:研究了非QuibiRibium的QuibiRibium Terahertz声学声子@ -al $-$-$ / o $ - 3 $ /陶瓷,晶粒尺寸约为10微米。通过热脉冲技术和光学检测为0.87 thz的光学检测,通过CR $ + 3 $ 5 $ /杂质离子荧光,光学检测为0.87 thz(29cm $ + $ min @ 1 $ /)声子。观察到从加热器到光学检测器的声子的扩散传播。实验结果表明,声子的平均自由路径为约150微米,因此显着大于晶粒尺寸。将这些结果与计算机计算(由M.B. Melnikov)进行比较,考虑到声学失配近似的迷失方晶粒的界面处的平面声波的折射和反射。通过激光激发在LHT中产生的Terahertz声子的动态通过激光激发溶胶 - 凝胶技术种植整体透明高度多孔$γ@ -al $-$ / o $ -3 $ /样品使用源位引起的反斯托克斯FLN光谱研究Cr $ + 3 $ /杂质离子($ + 2 $ / e - $ + 4 $ / $ -2 $ / lines)。除了长寿命(大约数十mS)的声子分布,热化的普拉克分布基本上不受约束地围绕EGA $ APEQ 0.6 THZ(20厘米$ + $ MIN @ 1 $ /),高占用号码$ OBAR @ n $ - 大约是ega $ /和衰减时间约为1毫秒。讨论的是这些振动的可能性,频率约为EGA,其与γ@ -al $-$-/ O $-3 $ /纳米级球形微晶的声学尺寸 - 谐振模式一致,形成材料和可能的作用光谱动态的这些振动的光学发电机的光谱动态。

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