activity
20242026
collaborators

7 papers

hep-ex2026

Improved Dark Photon Sensitivity from the Dark SRF Experiment

Saarik Kalia, Zhen Liu, Bianca Giaccone +15

We report the refined dark-photon exclusion bound from Dark SRF's pathfinder run. Our new result is driven by improved theoretical modeling of frequency instability in high-quality…

quant-ph2025

Ultracoherent superconducting cavity-based multiqudit platform with error-resilient control

Taeyoon Kim, Tanay Roy, Xinyuan You +26

Realizing the promise of quantum computing requires simultaneously increasing Hilbert-space size and coherence times. While qubit-based architectures have long been the dominant pa…

quant-ph2025

Quantifying Trapped Magnetic Vortex Losses in Niobium Resonators at mK Temperatures

D. Bafia, B. Abdisatarov, R. Pilipenko +4

Trapped magnetic vortices in niobium introduce microwave losses that degrade the performance of superconducting resonators. While such losses have been extensively studied above 1~…

quant-ph2025

Evaluating radiation impact on transmon qubits in above and underground facilities

Francesco De Dominicis, Tanay Roy, Ambra Mariani +20

Superconducting qubits can be sensitive to abrupt energy deposits caused by cosmic rays and ambient radioactivity. While previous studies have explored correlated effects in time a…

quant-ph2025

Demonstrating magnetic field robustness and reducing temporal T1 noise in transmon qubits through magnetic field engineering

Bektur Abdisatarov, Tanay Roy, Daniel Bafia +10

The coherence of superconducting transmon qubits is often disrupted by fluctuations in the energy relaxation time (T1), limiting their performance for quantum computing. While back…

quant-ph2025

Disentangling the Impact of Quasiparticles and Two-Level Systems on the Statistics of Superconducting Qubit Lifetime

Shaojiang Zhu, Xinyuan You, Ugur Alyanak +8

Temporal fluctuations in the superconducting qubit lifetime, , bring up additional challenges in building a fault-tolerant quantum computer. While the exact mechanisms remain…