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Ultrafast Laser Energy Density and Retinal Absorption Cross-Section Determination by Saturable Absorption Measurements

机译:通过饱和吸收测量确定超快激光能量密度和视网膜吸收截面

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摘要

Laser pulse nonlinear transmission measurements through saturable absorbers of known absorption parameters allow the measurement of their energy density. On the other hand, nonlinear transmission measurements of laser pulses of known energy density through absorbing media allow their absorption parameter determination. The peak energy density w0P of second harmonic pulses of a mode-locked titanium sapphire laser at wavelength λP = 400 nm is determined by nonlinear energy transmission measurement TE through the dye ADS084BE (1,4-bis(9-ethyl-3-car-bazovinylene)-2-methoxy-5-(2’-ethyl-hexyloxy)-benzene) in tetrahydrofuran. TE(w0P) calibration curves are calculated for laser pulse peak energy density reading w0P from measured pulse energy transmissions TE. The ground-state absorption cross-section σP and the excited-state absorption cross-section σex at λP, and the number density N0 of the retinal Schiff base isoform RetA in pH 7.4 buffer of the blue-light adapted recombinant rhodopsin fragment of the histidine kinase rhodopsin HKR1 from Chlamydomonas reinhardtii were determined by picosecond titanium sapphire second harmonic laser pulse energy transmission measurement TE through RetA as a function of laser input peak energy density w0P. The complete absorption cross-section spectrum σ
机译:通过已知吸收参数的饱和吸收器进行的激光脉冲非线性透射测量可以测量其能量密度。另一方面,已知能量密度的激光脉冲通过吸收介质的非线性透射测量可以确定其吸收参数。锁模钛蓝宝石激光器在波长λP= 400 nm处的二次谐波脉冲的峰值能量密度w0P通过通过染料ADS084BE(1,4-bis(9-ethyl-3-car-在四氢呋喃中的苯并亚乙烯基)-2-甲氧基-5-(2'-乙基己氧基)-苯)。从测量的脉冲能量传输TE计算激光脉冲峰值能量密度读数w0P的TE(w0P)校准曲线。组氨酸的蓝光重组视紫红质片段在pH 7.4缓冲液中的基态吸收截面σP和激发态吸收截面σex在λP处以及视网膜席夫碱同种型RetA在pH 7.4缓冲液中的数密度N0通过皮秒钛蓝宝石二次谐波激光脉冲能量传输测量值TE至RetA,确定了莱茵衣藻的激酶视紫红质HKR1随激光输入峰值能量密度w0P的变化。完整的吸收截面谱σ

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