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Quantum mechanics as a classical theory - Application to the interaction of light with an extremely diluted gas: Redshifts and black matter in astrophysics

机译:量子力学作为经典理论-在光与极稀释气体的相互作用中的应用:天体物理学中的红移和黑质

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摘要

In the study of experiments of laser spectroscopy appears a convergence of the methods of quantum electrodynamics and classical optics: for instance stochastic electrodynamics used for the study of "squeezed states" is common to both theories, and the quantum coherent states are almost classical states. We show that this convergence allows us to explain the paradoxes of quantum mechanics. The interaction of ultrashort laser pulses with ordinary matter is equivalent to the interaction of incoherent light with extremely dilute gases. Thus, the interaction of the light from the stars with cosmic gases produces a redshift similar to a Doppler redshift. In avery low pressure gas, the absorption of incoherent light disappears completely, so that the "black matter" could be simply H-2 and its products of decomposition by high-frequency radiation, H-2(+), H,.... [References: 22]
机译:在激光光谱实验研究中,量子电动力学方法和经典光学方法趋于融合:例如,用于“压缩态”研究的随机电动力学是这两种理论所共有的,而量子相干态几乎是经典态。我们证明这种收敛使我们能够解释量子力学的悖论。超短激光脉冲与普通物质的相互作用相当于非相干光与极稀薄气体的相互作用。因此,来自恒星的光与宇宙气体的相互作用产生类似于多普勒红移的红移。在平均低压气体中,不相干光的吸收完全消失,因此“黑物”可以简单地是H-2及其通过高频辐射分解的产物H-2(+),H,... [参考:22]

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