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Pendulum Represents Binary Quantum State of Oscillations

Masataka Ohta

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Abstract

There is a straightforward correspondence between superposition of polarization modes of photons and that of classical radio waves. While classical particles cannot be superpositioned, classical waves can be, which is within classical intuition. Even more intuitively, two dimensional oscillations of a pendulum represent oscillating binary quantum state such as polarization state of photons.

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What this paper is about

There is a straightforward correspondence between superposition of polarization modes of photons and that of classical radio waves. While classical particles cannot be superpositioned, classical waves can be, which is within classical intuition. Even more intuitively, two dimensional oscillations of a pendulum represent oscillating binary quantum state such as polarization state of photons.

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Available abstract

There is a straightforward correspondence between superposition of polarization modes of photons and that of classical radio waves. While classical particles cannot be superpositioned, classical waves can be, which is within classical intuition. Even more intuitively, two dimensional oscillations of a pendulum represent oscillating binary quantum state such as polarization state of photons.

Key concepts: Superposition principle, Physics, Photon, Classical mechanics, Quantum, Polarization (electrochemistry), Quantum mechanics, Classical physics

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