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Expression for the angular dependence of the quantum efficiency of a thin multi-alkali photocathode and its optical properties

机译:薄多碱光电阴极的量子效率与角度的关系式及其光学性质

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The dependence of quantum efficiency on the angle and polarization of the incident photon needs to be formulated for a precise description of the response of photomultiplier tubes. A simplified one-step model of photoelectron emission was derived from Spicer’s three-step model [W. E. Spicer, Phys. Rev. 112, 114 (1958)], and it enabled the formulation of the dependence of the quantum efficiency in the visible range for thin multi-alkali (NaKSbCs) photocathodes. The expression for the quantum efficiency was proved by a measurement of the photocurrent for linearly polarized light at various incident angles. Meanwhile, the measurement revealed the complex refractive indices and thicknesses both of the stratified photocathode and antireflection coating. It is indicated that the angular dependence of the quantum efficiency is dictated by the optical properties of the photocathode, which are discussed in detail on the basis of the obtained parameters.
机译:为了精确描述光电倍增管的响应,需要制定量子效率对入射光子的角度和偏振的依赖性。简化的一步法光电子发射模型是从Spicer的三步模型[W. E. Spicer,物理学。 Rev. 112,114(1958)],并且它使得能够形成薄多碱(NaKSbCs)光电阴极在可见光范围内的量子效率依赖性。通过测量在各种入射角下的线性偏振光的光电流来证明量子效率的表达式。同时,测量揭示了分层的光电阴极和抗反射涂层两者的复折射率和厚度。指出,量子效率的角度依赖性由光电阴极的光学性质决定,其根据获得的参数进行详细讨论。

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