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Spatial light modulation with pharaonis phoborhodopsin

机译:法老王磷视紫红质的空间光调制

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A detailed and accurate analysis is presented of the low power spatial light modulation (SLM) characteristics of pharaonis phoborhodopsin (ppR) based on nonlinear intensity induced excited-state absorption. Amplitude modulation of probe laser read beam transmissions at 390 and 488 nm, corresponding to the peak absorption of ppR{sub}M and ppR{sub}L states of the ppR photocycle by write beam intensity-induced population changes at 498 nm, corresponding to the peak absorption of the initial ppR state, have been analysed using the rate equation approach. The SLM characteristics are shown to be sensitive to the normalised small signal absorption coefficient (β), the rate constants of intermediates and absorption cross-section of the ppR state at probe wavelength (σ{sub}(1p)). There is an optimum value of β for which maximum percentage modulation can be achieved. It is shown that for ppR{sub}M and ppR{sub}L states, at typical values, modulation up to 35.9% and 97.2% can be achieved for a laser write beam intensity of 5 mW/cm{sup}2 and 1 W/cm{sup}2 respectively. It is shown that 100% modulation of the read beam can be achieved for σ{sub}(1p) = 0. SLM with ppR can be achieved at lower pump powers compared to wild type bacteriorhodopsin. The analysis demonstrates the usefulness of ppR for device applications due to its unique spectral characteristics, especially as a UV filter.
机译:详细和准确的分析提出了基于非线性强度诱导的激发态吸收的法老鱼磷视紫红质(ppR)的低功率空间光调制(SLM)特性。探针激光读取光束在390和488 nm处的传输幅度调制,对应于ppR光周期的ppR {sub} M和ppR {sub} L状态的峰值吸收,其原因是写入光束强度引起的种群在498 nm处发生变化,对应于使用速率方程法分析了初始ppR状态的峰吸收。显示出SLM特性对归一化的小信号吸收系数(β),中间体的速率常数和探针波长(σ{sub}(1p))的ppR状态的吸收截面敏感。有一个β的最佳值,可以实现最大百分比调制。结果表明,对于ppR {sub} M和ppR {sub} L状态,在典型值下,对于5 mW / cm {sup} 2和1的激光写入光束强度,调制度可达到35.9%和97.2% W / cm {sup} 2。结果表明,对于σ{sub}(1p)= 0,可以实现读取光束的100%调制。与野生型细菌视紫红质相比,具有ppR的SLM可以在较低的泵浦功率下实现。该分析证明了ppR由于其独特的光谱特性(特别是作为UV滤光片)而对设备应用有用。

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