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quant-ph2026

Einstein-Podolsky-Rosen correlations between mechanical oscillators revealed through SU(1,1) interferometry

Max-Emanuel Kern, Stefano Marti, Raquel Garcia-Belles +5

Quantum correlations are essential for achieving quantum advantage in computing, communication and sensing. Moreover, their observation challenges and constrains our fundamental un…

quant-ph2026

High-Fidelity Transmon Reset with a Multimode Acoustic Resonator

Andraž Omahen, Simon Storz, Igor Kladarić +1

Achieving sufficiently low residual excited-state populations remains a key challenge in superconducting quantum circuits, particularly for protocols operating close to noise limit…

quant-ph2026

Mechanical Resonator-based Quantum Computing

Yu Yang, Igor Kladaric, Martynas Skrabulis +11

Hybrid quantum systems combine the unique advantages of different physical platforms with the goal of realizing more powerful and practical quantum information processing devices.…

quant-ph2025

Genuine quantum non-Gaussianity and metrological sensitivity of Fock states prepared in a mechanical resonator

Q. Rumman Rahman, Igor Kladarić, Max-Emanuel Kern +4

Fock states of the quantum harmonic oscillator are fundamental to quantum sensing and information processing, serving as key resources for exploiting bosonic degrees of freedom. He…

quant-ph2024

A mechanical qubit

Yu Yang, Igor Kladaric, Maxwell Drimmer +6

Strong nonlinear interactions between quantized excitations are an important resource for quantum technologies based on bosonic oscillator modes. However, most electromagnetic and…