HORIZONS OF
NANOPHOTONICS 2026
Science — for Industry. A Strategic Dialogue Platform.
From laboratory prototype to industrial solution.
About the Conference

Horizons of Nanophotonics continues the tradition of annual international meetings, bringing together leading experts in photonics to discuss current challenges, share experience, and develop joint solutions.

1. Academic Track
Plenary lectures by recognized leaders from MIPT, ITMO, Lebedev Physical Institute (FIAN). Presentations of cutting-edge developments in nanophotonics and advanced materials that shape the future of the field.

2. Industrial Track
Discussion of technological demands and successful cases of technology commercialization. Industry representatives share which scientific ideas found market application and why.

3. Dialogue Platform
Roundtables uniting science and business. Live moderation and search for mutually beneficial solutions.


Scientific Topics

- Resonant Nanophotonics
- 2D Materials and Carbon Nanostructures
- Optical Metasurfaces
- Quantum and Terahertz Photonics
- Semiconductor Lasers
- Plasmonic Nanostructures
All abstracts for publication must be written in Russian strictly according to the template. Abstract length: 2 pages including summary, illustrations, and references (expert review not required). English summary is optional.

Contacts and Organizing Committee

For inquiries:
Anastasia Baryshnikova
+7 921 309 51 17
nanophotonics-conf@mipt.ru

Address: MIPT, Institutskiy per., 9, Dolgoprudny, Moscow Region.
Program

Three days of intensive work: from fundamental discoveries to strategic collaborations.
December 22–24, 2026
Moscow Region, Dolgoprudny (MIPT)
Функциональные структуры для нанофотоники
Алексей Большаков
Осветим последние результаты, полученные в области развития подходов оптоэлектроники и фотоники на основе полупроводниковых структур. В фокусе внимания — резонансные системы, позволяющие эффективно локализовать и направлять свет на субволновых масштабах  для создания источников излучения, в том числе наноразмерных лазеров. Мы покажем, как подобные решения интегрируются в актуальные фотонные платформы.
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