Publikation: Correlations of weak quantum measurements in a non-Markovian detection scheme
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Generalized quantum measurement schemes are described by positive operator-valued measures going beyond the projection postulate, which predicts the instantaneous collapse of the systems wave function. This allows to take the noninvasive limit and investigate the correlations of such weak measurements which facilitate the observation of non-commuting observables within the same system. We propose a scheme in which the detector is coupled to the measured system for a finite time, as it is the case in many real setups. This leads to non-Markovian effects appearing by memory functions which are related to symmetric and antisymmetric correlators of the detector variables. We investigate these functions addressing the role of equilibrium and non-equilibrium detectors and how they differ from and could realize the standard Markovian measurement respectively. The latter scheme leads to the symmetrized operator order (aka Keldysh ordering), which is widely used in quantum measurement discussions. We show that the non-Markovian measurement scheme yields information beyond the standard approach, allowing e.g. for the prove of the non classical nature of a system (quasiprobability statistics) by second-order correlation functions.
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BÜLTE, Johannes, Adam BEDNORZ, Wolfgang BELZIG, 2015. Correlations of weak quantum measurements in a non-Markovian detection scheme. International Conference on Noise and Fluctuations (ICNF 2015) Xian, China. XIan, China, 2. Juni 2015 - 6. Juni 2015. In: 2015 International Conference on Noise and Fluctuations (ICNF 2015). Piscataway, NJ: IEEE, 2015, pp. 156-159. ISBN 978-1-4673-8336-3. Available under: doi: 10.1109/ICNF.2015.7288572BibTex
@inproceedings{Bulte2015Corre-40103, year={2015}, doi={10.1109/ICNF.2015.7288572}, title={Correlations of weak quantum measurements in a non-Markovian detection scheme}, isbn={978-1-4673-8336-3}, publisher={IEEE}, address={Piscataway, NJ}, booktitle={2015 International Conference on Noise and Fluctuations (ICNF 2015)}, pages={156--159}, author={Bülte, Johannes and Bednorz, Adam and Belzig, Wolfgang} }
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