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Polarization multiplexed write-once-read-many optical data storage in bacteriorhodopsin films

机译:细菌视紫红质膜中的偏振多路复用一次写入多次读取光学数据存储

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摘要

In polymeric films of bacteriorhodopsin (BR) a photoconversion product, which was named the F620 state, was observed on excitation of the film with 532 nm nanosecond laser pulses. This photoproduct shows a strong nonlinear absorption. Such BR films can be used for write-once-read-many (WORM) optical data storage. We demonstrate that a photoproduct similar or even identical to that obtained with nanosecond pulses is generated on excitation with 532 nm femtosecond pulses. This photoproduct also shows strong anisotropic absorption, which facilitates polarization storage of data. The product is thermally stable and is irretrievable to the initial B state either by photochemical reaction or through a thermal pathway. The experimental results indicate that the product is formed by a two-photon absorption process. Optical WORM storage is demonstrated by use of two polarization states, but more polarization states may be used. The combination of polarization data multiplexing and extremely short recording time in the femtosecond range enables very high data volumes to be stored within a very short time.
机译:在细菌视紫红质(BR)的聚合物薄膜中,在用532 nm纳秒激光脉冲激发薄膜时观察到了光转化产物,称为F620状态。该光产物显示出强烈的非线性吸收。这样的BR膜可用于一次写入多次读取(WORM)光学数据存储。我们证明,在用532 nm飞秒脉冲激发时会生成与用纳秒脉冲获得的光产品相似甚至相同的光产品。该光产物还显示出强烈的各向异性吸收,这有利于数据的极化存储。该产物是热稳定的,并且无论是通过光化学反应还是通过热途径都无法恢复到初始B状态。实验结果表明,该产物是通过双光子吸收过程形成的。通过使用两个偏振态展示了光学WORM存储,但是可以使用更多的偏振态。极化数据多路复用和飞秒范围内极短的记录时间相结合,可以在非常短的时间内存储非常大的数据量。

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