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September 10, 2025JOURNAL OF ADVANCES IN PHYSICSOpen Access

Quantum Model based on Fluid Energy Laws and String Solution for Laser Cooling Dependent on the Photon Density and Frequency

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Authors

HHHabib. A. HMAMubarak Dirar Abd-AllaNANajwa Idris A. Aham

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Overview

Findings demonstrate laser cooling conditions in quantum systems, suggesting photon density and frequency are critical.

Key Points

  • High cooling degree relies on decreasing gas density and increasing photon density or frequency.
  • The study uses an expression derived from energy conservation laws applied to fluids to model cooling.
  • The approach considers atoms as vibrating strings, enhancing understanding of their dual nature in quantum contexts.
  • These insights are applicable to both nano and quantum systems, highlighting the significance of particle dynamics.

Cite This Study

H et al. (2025) studied this question.

synapsesocial.com/papers/68c192579b7b07f3a0616c7dhttps://doi.org/10.24297/jap.v23i.9772
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