Research Area

Circuit/cavity QED and photonic interfaces

Selected publications on superconducting microwave cavities, Fano-qubits, cryogenic interfaces, high-Q resonators, and microwave/photonic quantum hardware.

Relevant Publications

Papers most closely tied to this area. See more work on the Publications page, or the complete record on Google Scholar.

  1. D. Trivedi, A. Bhowmik, L. Niaz, and A. Krasnok, “Reflection-Zero Waveforms for Selective Loading in Shared-Line Superconducting Qubit Circuits,”Advanced Quantum Technologies 9(9), e70441 (2026). Selected for a cover feature.doi:10.1002/qute.70441
  2. A. Krasnok, “Metamaterials in Superconducting and Cryogenic Quantum Technologies,”Applied Physics Reviews 13, 021311 (2026).doi:10.1063/5.0282013
  3. A. Krasnok, P. Dhakal, A. Fedorov, P. Frigola, M. Kelly, and S. Kutsaev, “Superconducting Microwave Cavities and Qubits for Quantum Information Systems,”Applied Physics Reviews 11(1), 011302 (2024).doi:10.1063/5.0155213
  4. I. Torres and A. Krasnok, “A cryogenic dielectric antenna for wireless sensing and interfacing outside the 10 K environment,”Cryogenics 155, 104286 (2026).doi:10.1016/j.cryogenics.2026.104286
  5. S. V. Kutsaev et al. (incl. A. Krasnok), “Enhancing the Q-Factor of a Practical Qubit Niobium Three-Dimensional λ/4-Resonator Through Surface Treatment,”IEEE Transactions on Applied Superconductivity 34(2), 1700909 (2024).doi:10.1109/TASC.2024.3354948
  6. D. Trivedi, L. Belostotski, A. Madanayake, and A. Krasnok, “Fano-Qubits for Quantum Devices with Enhanced Isolation and Bandwidth,”Applied Physics Letters 122, 264003 (2023).doi:10.1063/5.0151047
  7. I. Torres and A. Krasnok, “Cryogenic Dielectric Mie Resonators for Quantum Applications,”Proc. SPIE 13379, 133790H (2025).doi:10.1117/12.3052180
  8. A. Pronikov, A. Krasnok, S. Romanenko, A. Smirnov, and V. Yakovlev, “Ferrite-Free Circulator for Precise Measurements of SRF Cavities with High Q-Factor,”NAPAC 2022, WEPA49.doi:10.18429/JACoW-NAPAC2022-WEPA49