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March 5, 2026Physics0 citationsOpen Access

Quantum Concepts and Techniques in Classical Domains Demonstrated in Bulk Phonons and Plasmons

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MBM. Babiker

Key Points

  • The aim is to explore the influence of quantum concepts on classical physical systems, particularly plasmon and phonon interactions.
  • Systematic quantization of bulk plasmons and phonons
  • Analysis of transverse and longitudinal forms
  • Discussion of interactions with quantum systems such as electrons and atoms
  • Illustration through electron energy loss spectroscopy case study
  • Demonstrated how quantum techniques enhance interactions of longitudinal plasmons with matter
  • Outlined the impact of the quantum concept on classical systems
  • Highlighted advances in technological applications through quantum mechanics

Abstract

The turning point that sparked the initiation of quantum theory was the Planck–Einstein postulate that the energy of a monochromatic radiation field is quantized in terms of photons, and this was followed by the development of the principles of quantum mechanics. Although some conceptual issues remain to be resolved, quantum mechanics is regarded as a well-established discipline which may lead to the unraveling of the nature of matter in general. Today, the influence of quantum mechanics is evident in its applications, with remarkable technological advances involving diverse aspects of the physical world. What appears to need particular attention, however, (after a hundred years have elapsed since the birth of quantum mechanics) is the impact that the concept of the ‘quantum’ has had beyond traditional quantum mechanics. The paper describes how the ‘quantum’ concept has influenced and continues to influence developments in physical systems, which are essentially classical, in that they are basically governed, entirely, or in part, by non-quantum laws, but in which, the physics is distinguished by its own special quantum—the photon analogue. The paper illustrates this by considering, as prototype examples, bulk plasmons and phonons. The study outlines the systematic quantization of plasmons and phonons, both of the polariton (transverse) forms and their longitudinal forms, and discusseshow these interact with quantum systems such as electrons, atoms, and condensed matter. It is demonstarted using one case, namely, involving longitudinal plasmons, how utilizing quantum concepts and techniques facilitate their interaction with matter, as in electron energy loss spectroscopy.

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Cite This Study

M. Babiker (2026) studied this question.

synapsesocial.com/papers/69a91dd2d6127c7a504c1147https://doi.org/10.3390/physics8010031
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