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Two-photon vibrational spectroscopy for biosciences based on surface-enhanced hyper-Raman scattering

机译:基于表面增强超拉曼散射的生物科学双光子振动光谱

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摘要

Two-photon excitation is gaining rapidly in interest and significance in spectroscopy and microscopy. Here we introduce a new approach that suggests versatile optical labels suitable for both one- and two-photon excitation and also two-photon-excited ultrasensitive, nondestructive chemical probing. The underlying spectroscopic effect is the incoherent inelastic scattering of two photons on the vibrational quantum states called hyper-Raman scattering (HRS). The rather weak effect can be strengthened greatly if HRS takes place in the local optical fields of gold and silver nanostructures. This so-called surface-enhanced HRS (SEHRS) is the two-photon analogue to surface-enhanced Raman scattering (SERS). SEHRS provides structurally sensitive vibrational information complementary to those obtained by SERS. SEHRS combines the advantages of two-photon spectroscopy with the structural information of vibrational spectroscopy and the high-sensitivity and nanometer-scale local confinement of plasmonics-based spectroscopy. We infer effective two-photon cross-sections for SEHRS on the order of 10−46 to 10−45 cm4·s, similar to or higher than the best “action” cross-sections (product of the two-photon absorption cross-section and fluorescence quantum yield) for two-photon fluorescence, and we demonstrate HRS on biological structures such as single cells after incubation with gold nanoparticles.
机译:在光谱学和显微学中,双光子激发正迅速引起人们的兴趣和重要性。在这里,我们介绍了一种新方法,该方法提出了适用于单光子和双光子激发以及双光子激发的超灵敏,无损化学探测的通用光学标签。潜在的光谱效应是两个光子在振动量子态上的非相干非弹性散射,称为超拉曼散射(HRS)。如果HRS在金和银纳米结构的局部光场中发生,则可以大大增强相当弱的效果。这种所谓的表面增强HRS(SEHRS)是表面增强拉曼散射(SERS)的两光子类似物。 SEHRS提供的结构敏感振动信息与SERS获得的振动信息互补。 SEHRS结合了双光子光谱的优势,振动光谱的结构信息以及基于等离子体的光谱的高灵敏度和纳米级局限性。我们推断SEHRS的有效两光子截面大约为10 −46 至10 −45 cm 4 ·s,类似于或高于双光子荧光的最佳“作用”截面(双光子吸收截面和荧光量子产率的乘积),并且我们在与金纳米粒子孵育后,在生物结构(如单细胞)上证明了HRS。

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