
معرفی
Pavel Kurilovich is a Postdoctoral Fellow at Harvard University. His research focuses on experimental condensed matter physics, particularly in the realm of superconducting qubits and their operational challenges. He holds a Ph.D. from Yale University (2025), advised by Michel Devoret, with a dissertation addressing unwanted transitions in superconducting qubits induced by microwave drives. His work systematically categorizes decoherence mechanisms, including spurious resonances, photon scattering, and AC Stark effects.
Key research interests include quantum computing hardware development, superconductivity, and experimental approaches to mitigate qubit decoherence. Kurilovich's experimental studies aim to enhance qubit operation fidelity by suppressing microwave-induced transitions, a critical step toward fault-tolerant quantum computation.
Recent articles highlight advancements in characterizing qubit transitions, quasiparticle dynamics, and readout optimization. His contributions include developing methodologies to stabilize qubit states and improve measurement precision through high-frequency techniques and gap-engineered transmons.
No scientific awards are listed, though his work is foundational for quantum hardware advancements. His research aligns with Harvard's efforts in quantum information science and superconducting systems.



