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July 16, 2026
Team Success: Aligning Means with Objectives
In corporations, sports, and academia, people often face challenges they cannot handle alone. In such cases, selecting the right team is crucial. Tatiana Mayskaya, Associate Professor at the HSE Faculty of Economic Sciences and the International College of Economics and Finance, together with colleagues from foreign universities, examined team characteristics and found that less diverse teams are better suited to objectives where a high average performance is important, whereas more diverse teams are preferable when avoiding failure is critical. The paper has been published in Economic Theory.
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.
July 15, 2026
HSE MIEM Students to Develop Two Satellites from Scratch for Orbital Experiments
The devices, created by student teams, will conduct space research on the properties of promising solar cells, on-board energy storage systems, and serial electronics for student satellites.

 

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New method of SPP excitation based on metal photoluminescence

Optics Communications. 2021. Vol. 486. P. 126793.
Balykin V. I., Melentiev P. N., Калмыков А. С.

A new method of surface plasmon waves excitation based on the photoluminescence of a nanostructured metal
surface is proposed. The method was demonstrated using a plasmonic crystal formed by an array of nanoholes
in 200 nm thick Ag film (supporting SPP resonances) covered by a 10 nm thin Au layer (for efficient excitation
of photo-induced luminescence). It was shown that using this method it is possible: (i) to excite SPP waves in
ultra-large spectral range, (ii) to measure plasmonic crystal optical properties, (iii) to measure optical characteristics
of the SPP waves.

Research target: Nanotechnologies
Priority areas: engineering science
Language: English
Full text
DOI
Keywords: наноплазмоника и нанофотоникаnanoplasmonics and nanophotonics
Publication based on the results of:
Визуализация единичных биомолекул на основе сильной оптической связи (2021)
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