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Adding or subtracting a single photon is the same for pure squeezed vacuum states
Journal article   Open access

Adding or subtracting a single photon is the same for pure squeezed vacuum states

APL Quantum, Vol.2(1), p.Article 016117
12/02/2025

Abstract

Deep learning;Artificial neural networks;Machine learning;Quantum state;Density-matrix;Quantum optics;Quantum tomography;Wigner functions

The addition of a single photon to a light field can lead to exactly the same outcome as the subtraction of a single photon: starting from the same initial state, both procedures can generate the same final quantum state. We prove that this identity-of-outcome is true for pure squeezed vacuum states of light, and in some sense only for those. We show that mixed states can show this identity-of-outcome for the addition or subtraction of a photon if they are generated from the incoherent sums of pure squeezed vacuum states with the same squeezing. We point out that our results give a reinterpretation to the fact that pure squeezed vacuum states, with squeezing e ⌐z , are formally annihilated by Bogoliubov-transformed annihilation operators: aˆz = aˆ cosh (z) ⌐ aˆ † sinh (z).

url
https://doi.org/10.1063/5.0246230View
Published (Version of record) Open

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