papers

Publications (10)

quant-ph2024

Broadband parametric amplification in DARTWARS

Marco Faverzani, Pietro Campana, Rodolfo Carobene +46

Superconducting parametric amplifiers offer the capability to amplify feeble signals with extremely low levels of added noise, potentially reaching quantum-limited amplification. T…

quant-ph2024

Design and simulation of a transmon qubit chip for Axion detection

Roberto Moretti, Hervè Atsè Corti, Danilo Labranca +54

Quantum Sensing is a rapidly expanding research field that finds one of its applications in Fundamental Physics, as the search for Dark Matter. Devices based on superconducting qub…

quant-ph2026

Achieving speedup in Dark Matter search experiments with a transmon-based NISQ algorithm

Roberto Moretti, Pietro Campana, Rodolfo Carobene +9

Coherent detection of ultralight bosonic dark matter can be achieved by monitoring slow Rabi oscillations in superconducting qubits. We introduce an ancilla-assisted, gate-based pr…

quant-ph2024

Development of KI-TWPAs for the DARTWARS project

Felix Ahrens, Elena Ferri, Guerino Avallone +40

Noise at the quantum limit over a broad bandwidth is a fundamental requirement for future cryogenic experiments for neutrino mass measurements, dark matter searches and Cosmic Micr…

quant-ph2022

First design of a superconducting qubit for the QUB-IT experiment

Danilo Labranca, Hervè Atsè Corti, Leonardo Banchi +5

Quantum sensing is a rapidly growing field of research which is already improving sensitivity in fundamental physics experiments. The ability to control quantum devices to measure…

physics.ins-det2025

Impact of embedded Ho on the performance of the transition-edge sensor microcalorimeters of the HOLMES experiment

Douglas Bennett, Matteo Borghesi, Pietro Campana +19

We present a detailed investigation of the performance of transition-edge sensor (TES) microcalorimeters with Ho atoms embedded by ion implantation, as part of the HOLMES e…