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April 30, 2026
HSE Researchers Compile Scientific Database for Studying Childrens Eating Habits
The database created at HSE University can serve as a foundation for studying children’s eating habits. This is outlined in the study ‘The Influence of Age, Gender, and Social-Role Factors on Children’s Compliance with Age-Based Nutritional Norms: An Experimental Study Using the Dish-I-Wish Web Application.’ The work has been carried out as part of the HSE Basic Research Programme and was presented at the XXVI April International Academic Conference named after Evgeny Yasin.
April 30, 2026
New Foresight Centre Study Identifies the Most Destructive Global Trends for Humankind
A team of researchers from the HSE International Research and Educational Foresight Centre has examined how global trends affect the quality of human life—from life expectancy to professional fulfilment. The findings of the study titled ‘Human Capital Transformation under the Influence of Global Trends’ were published in Foresight.
April 28, 2026
Scientists Develop Algorithm for Accurate Financial Time Series Forecasting
Researchers at the HSE Faculty of Computer Science benchmarked more than 200,000 model configurations for predicting financial asset prices and realised volatility, showing that performance can be improved by filtering out noise at specific frequencies in advance. This technique increased accuracy in 65% of cases. The authors also developed their own algorithm, which achieves accuracy comparable to that of the best models while requiring less computational power. The study has been published in Applied Soft Computing.

 

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Self-Induced MBE-grown InAsP Nanowires on Si Wafers for SWIR Applications

Journal of Materials Chemistry C. 2025. Vol. 13. No. 12. P. 6063–6072.
Kaveev A., Fedorov V., Pavlov A., Miniv D., Kirilenko D., Nadtochiy A., Goltaev A., Malenin A., Ustimenko R., Karaulov D., Vinnichenko M., Moiseev E., Mukhin I.

InAsP-based nanoheterostructures are in great demand in mid-infrared photonics for telecom and sensing applications. While the vapor–liquid–solid grown nanowires have demonstrated the potential to control the crystal phase and vary the InAsP alloy composition in a wide range, the use of a foreign gold catalyst adversely affects their optoelectronic properties. Here we address the limitations of a catalyst-free approach, revealing that self-induced InAsP nanowires with a high P-content of 49%, greater than that previously reported, can be grown on silicon wafers via solid-source molecular beam epitaxy. The interplay between arsenic and phosphorus incorporation was studied, revealing that an increased phosphorus flux suppresses the nanowire axial growth rate, decreasing the length to diameter aspect ratio. The relationship between the InAsP nanowire composition and crystal structure was studied using transmission electron microscopy and X-ray diffraction reciprocal space mapping. It was found that, for all compositions achieved, nanowires grow in a random hexagonal wurtzite phase. Low-temperature photoluminescence studies and ab initio density functional theory calculations were performed to evaluate the dependence of the bandgap on the structure and composition of the InAsP alloys. Room temperature photoluminescent response at wavelengths as short as 1480 nm was demonstrated, revealing the suitability of grown nanowires for applications in photobiology and remote sensing.

Research target: Nanotechnologies Physics
Language: English
DOI
Text on another site
Keywords: nanowiresMid-infrared emitterssemiconductor nanoheterostructuresInAsP
Publication based on the results of:
Study of disk microlasers and photonic integrated circuits for optical switching and sensing elements (2025)
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