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July 2, 2026
Researchers Discover How Spelling Errors Slow Down Reading in Russian
Psycholinguists from the Centre for Language and Brain at HSE University–St Petersburg have shown that words that are frequently misspelled are processed more slowly by readers, even when presented with the correct spelling. The researchers confirmed this effect for the first time using Russian-language materials and found that response speed is most strongly linked to how confidently individuals can distinguish the correct spelling of a word from an incorrect one. The study has been published in The Mental Lexicon.
July 2, 2026
HSE Develops App for Assessing Phonological Processing in Children
Researchers at the HSE Centre for Language and Brain have developed a new digital tool for assessing children's phonological processing skills—the ZARYA (Sound Analysis of the Russian Language) test battery. It is the first standardised application in Russia designed to provide a fast and reliable assessment of children's ability to distinguish speech sounds, retain them in working memory, and perform phonemic analysis. The app runs on Android tablets and smartphones and is available for download from RuStore. Details of the test validation have been published in the Journal of Speech, Language, and Hearing Research.
July 1, 2026
Scientists Discover Why Europium 'Misbehaves'
Europium is a rare-earth metal responsible for the pure red glow in displays and other luminescent materials. For a long time, however, it refused to emit light when surrounded by certain organic molecules known as acylpyrazolone ligands. Chemists have now uncovered the reason: in europium complexes with these ligands, a 'black window' appears—a charge-transfer state in which the energy absorbed by the ligand is dissipated as heat rather than emitted as light. Understanding this mechanism opens the way to designing more efficient red-emitting materials for displays, fluorescent thermometers, and chemical sensors. The results have been published in Dalton Transactions.

 

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On the Growth of InGaN Nanowires by Molecular-Beam Epitaxy: Influence of the III/V Flux Ratio on the Structural and Optical Properties

Journal of Surface Investigation: X-Ray, Synchrotron and Neutron Techniques. 2024. Vol. 18. No. 2. P. 408–412.
Gridchin V. O., Komarov S. D., Soshnikov I. P., Shtrom I. V., Reznik R. R., Kryzhanovskaya N. V., Cirlin G. E.

In this study, for the first time, the influence of the III/V flux ratio on the structural and optical characteristics of InGaN nanowires grown by plasma-assisted molecular beam epitaxy are investigated. It is found that the formation of InGaN nanowires with a core–shell structure occurs when the III/V flux ratio (taking into account the In-incorporation coefficient) is about 0.9–1.2. At the same time, an increase in the III/V flux ratio from the intermediate growth conditions to metal-rich conditions leads to a decrease in the In content in nanowires from ~45 to ~35%. Samples of this type exhibit photoluminescence at room temperature with a maximum in the range from 600 to 650 nm. A further increase in the III/V flux ratio to ~1.3 or its decrease to ~0.4 lead to the formation of merged nanocolumnar layers with a low In content. The results obtained may be of interest for studying the growth processes of InGaN nanowires and creating RGB lightemitting devices based on them.

Research target: Physics Nanotechnologies
Language: English
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Keywords: кремнийsiliconnanowiresInGaNmolecular-beam epitaxyмолекулярно-пучковая эпитаксия photoluminescenceнитевидные нанокристаллыфотолюминесценцияInGaN
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