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Optimizing two-photon absorption for volumetric optical data storage

机译:优化双光子吸收,用于体积光学数据存储

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We study the requirements imposed on organic photochromes for two-photon absorption (2PA) terabyte volumetric optical storage. We present a quantitative model of signal-to-noise ratio (SNR) and signal-to-background ratio (SBR) when 2PA-induced photochromic switching is used for writing, and 2PA-induced fluorescence is used for readout. We show that single-channel data access rate > 100 MHz at minimum SNR > 4 implies minimum intrinsic 2PA cross section, sigma(2) > 10(3) GM. Resonance enhancement allows sigma(2) similar to 10(5) GM, however, it also lowers SBR due to thermally-activated one-photon absorption. We model the critical trade-off between SNR and SBR as a function of laser frequency, intensity, and temperature. Acceptable parameter space may be achieved by careful choice of the above variables. We perform experiments with nonsymmetrical free-base phthalocyanines, which show efficient 2PA-induced photochromic switching between two tautomer forms and large sigma(2) similar to 10(4) GM, and show good potential for high-capacity data storage. (c) 2007 Optical Society of America.
机译:我们研究了对两光子吸收(2PA)TB容量光学存储对有机光致色素的要求。当2PA诱导的光致变色开关用于写入,而2PA诱导的荧光用于读出时,我们提出了信噪比(SNR)和信噪比(SBR)的定量模型。我们显示,在最小SNR> 4的情况下,单通道数据访问速率> 100 MHz意味着最小固有2PA横截面,sigma(2)> 10(3)GM。共振增强允许sigma(2)类似于10(5)GM,但是由于热激活的单光子吸收,它也会降低SBR。我们将SNR和SBR之间的临界权衡建模为激光频率,强度和温度的函数。可以通过仔细选择上述变量来获得可接受的参数空间。我们用非对称游离碱酞菁进行实验,该实验表明在2个互变异构体形式和类似于10(4)GM的大sigma(2)之间有效的2PA诱导的光致变色切换,并显示出高容量数据存储的良好潜力。 (c)2007年美国眼镜学会。

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