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Some Comments on the Matter Wave-light Wave Hypothesis

机译:关于物质波光波假说的一些评论

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From the de Broglie matter wave hypothesis and Planck’s energy quantization law, and assuming conservation of energy in the absorption of a photon and its consequent conversion to kinetic energy of motion by a material particle initially at rest, one can deduce a simple mathematical relationship between the wavelength λ (or frequency ν), of the photon absorbed by the particle at rest, and the resulting de Broglie matter wave length, λD, of the particle with kinetic energy of motion of mv2/2. The relationship so deduced, λD∝√λ, suggests that visible wavelengths of light, from about 4000 ?, in the violet, to beyond about 7000 ?, in the red, on absorption by an electron at rest, lead to material electron wavelengths, λD, of the order of the size of the electron transfer proteins seen in the photosynthetic reaction centers of photosynthesizing organisms, at about a size of 50–100 ?. In addition to understanding the mechanism of photosynthesis as a material wave mediated phenomenon, further areas of importance of the relations pointed out in this paper are in the design of experiments to gain a deeper understanding of the basic tenets of wave mechanics, and in the use of tunable lasers to probe various properties of material waves, and to precisely control their properties for applications including lithography.
机译:根据de Broglie物质波假设和普朗克的能量量化定律,并假设在吸收光子时能量守恒,并由此将最初处于静止状态的材料粒子转换为运动的动能,可以推导出两者之间的简单数学关系。静止时被粒子吸收的光子的波长λ(或频率ν),以及运动的动能为mv2 / 2的所得德布罗意物质波长λD。这样推导的关系λD ∝√λ,表明可见光的波长,从紫罗兰色的约4000λ,到红色的超过约7000λ,在静止电子的吸收下会导致在光合作用生物的光合作用反应中心中所见到的电子转移波长的大小约为材料的电子传输波长λD,大小约为50-100?。除了了解光合作用作为物质波介导的现象的机理外,本文指出的关系的其他重要领域还包括在实验设计中,以便更深刻地了解波力学的基本原理及其应用。可调激光器,以探测材料波的各种特性,并精确控制其特性,以用于包括光刻在内的各种应用。

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