activity
20222024
most citedUltra low noise readout with travelling wave parametric amplifiers: the DARTWARS project

11 citations · 23 across the 6 of their papers we have counts for

collaborators

6 papers

cond-mat.supr-con20246 cited

Nonlinear Behavior of Josephson Traveling Wave Parametric Amplifiers

Claudio Guarcello, Felix Ahrens, Guerino Avallone +40

Recent advancements in quantum technologies and advanced detection experiments have underscored the pressing need for the detection of exceedingly weak signals within the microwave…

quant-ph20243 cited

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-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…

physics.ins-det2023

Characterization of hydrogenated amorphous silicon sensors on polyimide flexible substrate

M. Menichelli, L. Antognini, S. Aziz +50

Hydrogenated amorphous silicon (a-Si:H) is a material having an intrinsically high radiation hardness that can be deposited on flexible substrates like Polyimide. For these propert…

physics.bio-ph20233 cited

Bioinspired Materials for Sensor and Clinical Applications: Two Case Studies

Eleonora Alfinito, Mariangela Ciccarese, Giuseppe Maruccio +2

The growing interest in bio-inspired materials is driven by the need for increasingly targeted and efficient devices that also have a low ecological impact. These devices often use…

quant-ph202211 cited

Ultra low noise readout with travelling wave parametric amplifiers: the DARTWARS project

A. Rettaroli, C. Barone, M. Borghesi +38

The DARTWARS project has the goal of developing high-performing innovative travelling wave parametric amplifiers with high gain, large bandwidth, high saturation power, and nearly…