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'White' random lasing in mixture of ZnSe, CdS and CdSSe micropowders

机译:ZnSe,CDS和CDSSE微循环混合的“白色”随机激光

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Room temperature random lasing with white light emission in a mixture of A~(II)B~(VI) semiconductor powders was achieved for the first time. The scattering gain media was formed by the mixture of closely packed active micron sized crystallites of ZnSe, CdS, CdSSe semiconductors. The micropowders were produced by grinding bulk crystals of each compound. Optical excitation was performed by 10-nanosecond pulses of tuned Ti:Al_2O_3-laser at 390 nm. The lasing in the mixture of semiconductor powders was achieved simultaneously at four wavelengths in blue, green, yellow and red spectral regions after exceeding the threshold excitation power density. A drastic integral intensity increase, spectrum narrowing and appearance of mode structure accompanied the laser action. ZnSe crystallites produce the laser light at about 460 nm while CdS particles - at about 520 nm. Two types of CdSSe semiconductor micropowders with different sulfur content lase at 580 nm and 660 nm. The threshold excitation power densities for all laser lines in the emission spectrum are approximately the same of about 0.9 MW/cm~2. The sum of the emission spectrum of the mixture of the micropowders forms white light with high brightness. Lasing is due to an appearance of random feedback for amplified radiation in the active medium of closely packed light scattering crystallites. The presented results may find their applications for visualization systems, lighting technology, data transmission, medicine as biosensors and in identification systems. The key feature of random lasers is low cost of its production and possibility to be deposited on any type of surface.
机译:首次实现了在〜(ii)b〜(vi)半导体粉末的混合物中具有白色发光的室温随机激光。散射增益介质由ZnSe,Cds,CDSSE半导体的紧密填充的活性微米尺寸微晶混合物形成。通过研磨每种化合物的堆积晶体来制备微粉粉。通过390nm的调谐Ti:Al_2O_3激光的10纳秒脉冲进行光学激发。在超过阈值激励功率密度之后,在蓝色,绿色,黄色和红色谱区域的四个波长中同时实现半导体粉末的混合物中的激光。激光动作伴随着频率的积分强度增加,光谱缩小和模式结构的外观。 ZnSE微晶在约460nm处产生激光,而CDS颗粒 - 在约520nm。两种类型的CDSSE半导体微粉粉,具有580nm和660nm的不同硫含量含量。发射光谱中的所有激光线的阈值激励功率密度大致相同约0.9mW / cm〜2。微粉粉混合物的发射光谱的和形成具有高亮度的白光。激光是由于随机反馈的外观,对于紧密堆积的光散射微晶的活性介质中的放大辐射。所呈现的结果可以在可视化系统,照明技术,数据传输,医学作为生物传感器和识别系统中找到它们的应用。随机激光器的关键特征是其生产的低成本,并且可以存放在任何类型的表面上。

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