首页> 外文会议>NATO Advanced Study Institute on molecular electronics: Bio-sensors and bio-computer >PHOTOINDUCED ANISOTROPY AND DYNAMIC POLARIZATION HOLOGRAPHY ON BACTERIORHODOPSIN FILMS FOR OPTICAL INFORMATION PROCESSING
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PHOTOINDUCED ANISOTROPY AND DYNAMIC POLARIZATION HOLOGRAPHY ON BACTERIORHODOPSIN FILMS FOR OPTICAL INFORMATION PROCESSING

机译:光脉冲磷酸膜对光学信息处理膜上的光态各向异性和动态偏振全息

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摘要

Bacteriorhodopsin (BR), a photoreceptor protein possesses a photochemical cycle of several distinct intermediates; all of them are photoactive. The BR molecules both in the initial form of the photocycle, bR570 (absorption maximum around 570 nm) and longest-lived (in films) intermediate M412 (absorption maximum at 412 nm) possess anisotropic absorption. Under the action of linearly polarized light, the reversible anisotropic photoselection of BR molecules takes place. In the present work, the potentiality for the use of photoinduced anisotropy in the BR-films based on both bR570 and M412 for the logical image processing is demonstrated. The dynamic polarization holography recording based on anisotropic photoselection mechanism allows one to increase a storage density and decrease the information erasure during the read-out procedure. A comparison of the experimental dependence of the relation between diffraction efficiencies of the intensity and polarization gratings on the recording intensity with calculated one is a very sensitive technique to study the intensity-dependent recovery t ime. It is shown that average recovery time in bR570 decreases with increasing the He-Ne laser recording intensity. Hence, a data storage time can be controlled by recording light intensity.
机译:感光体蛋白质(BR)具有几种不同中间体的光化学循环;所有这些都是光活性的。 BR分子在光循环的初始形式中,BR570(吸收最大约为570nm)和最长寿命(在薄膜)中间M412(在412nm处的吸收最大值)具有各向异性的吸收。在线性偏振光的作用下,BR分子的可逆各向异性光束发生。在本作工作中,证明了基于BR570和M412用于逻辑图像处理的BR膜中使用光诱导的各向异性的潜力。基于各向异性照相机机构的动态偏振全息记录允许人们增加存储密度并在读出过程中降低信息擦除。对衍射效率与计算的记录强度的衍射效率之间关系的实验依赖性的比较是研究强度依赖性恢复T IME的非常敏感的技术。结果表明,BR570中的平均恢复时间随着HE-NE激光记录强度的增加而降低。因此,可以通过记录光强度来控制数据存储时间。

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