STRONGLY COUPLED QUANTUM AND CLASSICAL-SYSTEMS AND ZENO EFFECT

Blanchard P, JADCZYK A (1993)
PHYSICS LETTERS A 183(4): 272-276.

Journal Article | Published | English

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Abstract
A model interaction between a two-state quantum system and a classical switching device is analysed and shown to lead to the quantum Zeno effect for large values of the coupling constant kappa. A minimal piecewise deterministic random process compatible with the Liouville equation is described, and it is shown that kappa-1 can be interpreted as the jump frequency of the classical device.
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Blanchard P, JADCZYK A. STRONGLY COUPLED QUANTUM AND CLASSICAL-SYSTEMS AND ZENO EFFECT. PHYSICS LETTERS A. 1993;183(4):272-276.
Blanchard, P., & JADCZYK, A. (1993). STRONGLY COUPLED QUANTUM AND CLASSICAL-SYSTEMS AND ZENO EFFECT. PHYSICS LETTERS A, 183(4), 272-276.
Blanchard, P., and JADCZYK, A. (1993). STRONGLY COUPLED QUANTUM AND CLASSICAL-SYSTEMS AND ZENO EFFECT. PHYSICS LETTERS A 183, 272-276.
Blanchard, P., & JADCZYK, A., 1993. STRONGLY COUPLED QUANTUM AND CLASSICAL-SYSTEMS AND ZENO EFFECT. PHYSICS LETTERS A, 183(4), p 272-276.
P. Blanchard and A. JADCZYK, “STRONGLY COUPLED QUANTUM AND CLASSICAL-SYSTEMS AND ZENO EFFECT”, PHYSICS LETTERS A, vol. 183, 1993, pp. 272-276.
Blanchard, P., JADCZYK, A.: STRONGLY COUPLED QUANTUM AND CLASSICAL-SYSTEMS AND ZENO EFFECT. PHYSICS LETTERS A. 183, 272-276 (1993).
Blanchard, Philippe, and JADCZYK, A. “STRONGLY COUPLED QUANTUM AND CLASSICAL-SYSTEMS AND ZENO EFFECT”. PHYSICS LETTERS A 183.4 (1993): 272-276.
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