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Ultrafast nonlinear absorption in hemoprotein cytochrome-c and its application to computing

机译:血蛋白细胞色素c超快非线性吸收及其在计算中的应用

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Ultrafast saturable and reverse saturable absorption has been theoretically analyzed in hemoprotein cytochrome-c (cyt-c). The effect of laser pulse intensity and pulse width, absorption cross-section, pulse frequency and lifetime of the excited states has been studied in detail to optimize saturable and reverse saturable absorption. The results have been used to design all-optical femtosecond AND, OR NOT and the universal NOR and NAND logic gates, at 530 and 460 nm respectively. Theoretical simulations are in good agreement with reported experimental results. The designs are the first application of cyt-c based all-optical logic gates with sub-picosecond switch off/on time. The advantages of simple design, ultrafast operation, high nonlinear optical coefficients and stability of cyt-c in a broad spectral range, make it prospective for photonic computing applications.
机译:理论上已经在血红蛋白细胞色素c(cyt-c)中分析了超快可饱和和反可饱和吸收。详细研究了激光脉冲强度和脉冲宽度,吸收截面,脉冲频率和激发态寿命的影响,以优化可饱和和反饱和吸收。结果已被用于设计分别在530 nm和460 nm的全光飞秒AND,OR NOT和通用NOR和NAND逻辑门。理论模拟与报告的实验结果非常吻合。这些设计是基于cyt-c的全光学逻辑门的首个应用,具有亚皮秒的关闭/开启时间。设计简单,超快操作,高非线性光学系数以及cyt-c在宽光谱范围内的稳定性等优点使其在光子计算应用中具有广阔的前景。

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