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July 15, 2026
Economists Propose More Effective Approach to Reducing Smoking
Economists at HSE University have examined how smokers respond to changes in cigarette prices. When tobacco prices increase, cigarette consumption does not always decline. In fact, spending on tobacco may even rise: according to the researchers, a 1% decrease in cigarette affordability leads to a 0.28% increase in per capita tobacco expenditure. The findings suggest that to reduce smoking rates, tobacco prices must rise faster than household incomes. The study has been published in Voprosy Statistiki.
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Simulation of open quantum systems by automated compression of arbitrary environments

Nature Physics. 2022. Vol. 18. No. 6. P. 662–668.
Cygorek M., Cosacchi M., Vagov A., Axt V. M., Lovett B., Keeling J., Gaugner E.

Studies of the dynamics of open quantum systems are limited by the large Hilbert space of typical environments, which is too large to be treated exactly. In some cases, approximate descriptions of the system are possible, for example, when the environment has a short memory time or only interacts weakly with the system. Accurate numerical methods exist, but these are typically restricted to baths with Gaussian correlations, such as non-interacting bosons. Here we present a method for simulating open quantum systems with arbitrary environments that consist of a set of independent degrees of freedom. Our approach automatically reduces the large number of environmental degrees of freedom to those which are most relevant. Specifically, we show how the process tensor describing the effect of the environment can be iteratively constructed and compressed using matrix product state techniques. We demonstrate the power of this method by applying it to a range of open quantum systems, including bosonic, fermionic and spin environments. The versatility and efficiency of our automated compression of environments method provides a practical general-purpose tool for open quantum systems.

Research target: Physics Mathematics Computer Science Nanotechnologies
Language: English
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Keywords: сложные системыcomplex systemsopen quantum systemsоткрытые квантовые системыFeynman path integralинтегралы по траекториям Фейнманаtensor networksтензорные сети
Publication based on the results of:
Investigations of quantum effects in low-dimensional materials  (2022)
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