collaborators

5 papers

quant-ph2026

Tantalum as a base material for superconducting integrated circuits

Evgeniy V. Zikiy, Nikita S. Smirnov, Stanislav A. Kotenkov +9

The performance of superconducting integrated circuits for quantum applications is fundamentally limited by material-related losses. Tantalum, as an emerging material for next-gene…

physics.optics2026

Superconducting single-photon detectors for integrated quantum photonics

Ilya A. Stepanov, Oksana I. Shmonina, Evgeniy V. Sergeev +7

Single-photon detection possibility is a fundamental requirement for quantum technologies, including communication, computing and sensing. To achieve scalability and practical depl…

physics.optics2026

Thermo-optic modulator with ultra-high extinction ratio for low-loss silicon nitride integrated photonics

Dmitriy Serkin, Kirill Buzaverov, Aleksandr Baburin +9

Extremely low-loss silicon nitride integrated circuits is a potential platform for a growing number of frontier applications in quantum technologies, high-performance and analog co…

physics.optics2024

Silicon nitride integrated photonics from visible to mid-infrared spectra

Kirill A. Buzaverov, Aleksandr S. Baburin, Evgeny V. Sergeev +9

Recently, silicon nitride (Si3N4) photonic integrated circuits (PICs) are of a great interest due to their extremely low waveguides losses. The number of Si3N4 integrated photonics…

physics.optics2024

Tutorial on Silicon Photonics Integrated Platform Fiber Edge Coupling

Sergey S. Avdeev, Aleksandr S. Baburin, Evgeniy V. Sergeev +11

Photonic integrated circuits (PICs) play a crucial role in almost every aspect of modern life, such as data storage, telecommunications, medical diagnostics, green energy, autonomo…