Excerpt - page 12: "... A 12,390 (2.1) where h„ is the energy of the photon (eV), and A is its wavelength (A). Example 2.1 What is the corresponding wavelength for a 1. ..."
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Excerpt - page 48: "... accumulate bosons in the same state. Light would not be what it is if photons were not gregarious particles rushing to the same quantum state. ..."
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Excerpt - page 70: "... of physical reality. This prediction concerning the existence of the photon tells us what the photon is: Like the experience of changing field strength ..."
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Excerpt - page 182: "... different decay rates, and the ratio of these rates determines what a single photon creates: a single exciton or multiexcitons. ..."
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Excerpt - page 13: "... But since the photoelectric effect mea- sures electrons, and not photons, it is only indirect proof for the existence of photons. What we need is an experiment that is both simple and ..."
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Excerpt - page 103: "... the peaks on the left side of the absorption spectrum), what are the possible energies of the absorbed photon (express in terms of I, ..."
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Excerpt - page 4: "... be readily calculated from the known energy levels, wavefunctions and photon-matter interaction Hamiltonian. What appeared in a pervasive manner in several lectures (Ulbrich, Heitmann) ..."