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Using a selection of key experiments performed over the past 30 years or so, we present a discussion of the strikingly counter-intuitive phenomena of the quantum world that defy explanation in terms of everyday "common sense" reasoning, and we provide the corresponding quantum mechanical explanations with a very elementary use of associated formalism. Most, but certainly not all, of the experiments we describe are optical experiments involving a very small number of photons (particles of light). We begin with experiments on the wave-particle duality of electrons, proceed to experiments on the particle nature of light and single photon interference, delayed choice experiments and interaction-free detection, then go on to experiments involving the interference of two photons, quantum entanglement and Bell's Theorem, quantum teleportation, large-scale quantum effects and the divide between the classical and quantum worlds, addressing the question as to whether or not there is such a divide.
This book investigates the fundamental boundary between the quantum and classical worlds by analyzing key experiments that challenge conventional logic. Christopher C. Gerry, a physicist, utilizes a selection of experiments conducted over the last three decades to illustrate counter-intuitive quantum phenomena. He provides clear explanations of these complex topics using an accessible level of mathematical formalism, making the material approachable for readers with a basic scientific background.
What You Will Find
Experts and readers frequently note that this text serves as a bridge for those seeking to understand quantum mechanics without becoming overwhelmed by advanced mathematics. It is widely regarded as a clear and focused introduction to the experimental foundations of modern quantum theory.
Page Count:
212
Publication Date:
2016-05-01
Publisher:
Oxford University Press
ISBN-10:
0198754078
ISBN-13:
9780198754077
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