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July 9, 2026
HSE Economists Use Search Queries to Forecast Birth Rates
Researchers from the HSE Faculty of Economic Sciences have shown that the accuracy of birth rate forecasts for Russia can be improved by almost 50% by incorporating the dynamics of online search queries related to pregnancy and childbirth into forecasting models. In the best-performing models, the forecasting error fell from 4.6% to 3.2%. The findings have been published in Populations and Economics.
July 8, 2026
HSE Researchers Discover Who Eats Out in Russia-And Why
Around one-third of Russians (31.3%) rarely eat out or buy ready-made meals. The core group of active consumers—those who eat out or purchase prepared food almost every day or several times a week—accounts for only about 9% of the population. These are the findings of a study conducted by the HSE Institute for Social Policy. According to the researchers eating out is no longer a marker of high social status in Russia.
July 8, 2026
HSE University and RREDA Join Forces to Support 2026 Renewable Energy of the Planet Competition
HSE University and the Russia Renewable Energy Development Association (RREDA) have signed a partnership and information cooperation agreement to support Renewable Energy of the Planet—2026, a national competition with international participation for students and early-career researchers. Applications are open on the competition's website until September 20, 2026.

 

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Dual-driving parametric locking of GHz phonon sources to sub-hertz linewidth in optomechanical systems

Optica. 2024. Vol. 11. No. 8. P. 1103–1112.
Tang J., Xia Z., Bin Q., Lu X., Zeng L., Chen P., Jiang Q., Wang Y., Song H., Zhou Q., Zhou H., Arutyunov K., Lu X., Huang Y., Guo G., Deng G.

In the exploration of collective dynamics and advanced information processing, synchronization and frequency locking
of mechanical oscillations are cornerstone phenomena. Traditional synchronization techniques, which typically involve
a single mechanical mode, are limited by their inability to distinguish between intrinsic mechanical oscillations and
external signals after locking. Addressing this challenge, we introduce a parametric approach that enables simultaneous frequency locking of two gigahertz mechanical modes within an optomechanical crystal cavity.By modulating thepump light to match the sum and difference frequencies of the mechanical modes, we significantly narrow their linewidths from tens of kilohertz to below 1 Hz at room temperature and ambient pressure. This dual-locking scheme also drastically reduces the phase noise of the mechanical modes by 76.6 dBc/Hz at a 100 Hz offset, while allowing flexible tuning of the locked modes’ frequencies via input signal adjustments. Our method not only facilitates direct observation of mechanical oscillations under the locking regime but also enriches the understanding of coherent phonons in multimode regimes, opening new avenues for optomechanical applications in signal processing.

Research target: Electronics and Electrical Engineering Nanotechnologies Physics
Language: English
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DOI
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Keywords: наноструктураnanostructureoptomechanicsоптомеханика
Publication based on the results of:
Nanoelectronics of low-dimensional systems (2024)
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