collaborators

14 papers

quant-ph2026

Fault-Tolerant Heisenberg-Limited Quantum Sensing

Lorcan O. Conlon, Yu-Xin Wang, Erfan Abbasgholinejad +3

Quantum sensors hold great promise for achieving better sensitivity in the measurement of physical quantities compared to their classical counterparts. However, the conditions unde…

quant-ph2026

Years of Quantum Uncertainty: From Origins to Modern Insights

Lorcan O. Conlon, Biveen Shajilal, Jie Zhao +6

Heisenberg's uncertainty principle is a cornerstone of quantum mechanics, marking a decisive departure from classical physics. Conceived almost a century ago through a thought expe…

quant-ph2026

Multiparameter function estimation for general Hamiltonians

Erfan Abbasgholinejad, Sean R. Muleady, Jacob Bringewatt +2

Estimation of physical parameters encoded in a Hamiltonian is a central task in quantum sensing and learning. While the ultimate precision limit for estimating a single parameter c…

quant-ph2026

Ultimate sensitivity of multiparameter estimation in quantum sensing with undetected photons

Sanjeet Swaroop Panda, Lorcan O. Conlon, Li Gong +4

Quantum sensing with undetected photons is a technique where photons of one wavelength probe a sample, but information is extracted by measuring photons of another wavelength that…

quant-ph2026

Beating three-parameter precision trade-offs with entangling collective measurements

Simon K. Yung, Wen-Zhe Yan, Lan-Tian Feng +10

Quantum-mechanical incompatibility, which precludes the simultaneous precise measurement of non-commuting observables, imposes fundamental limits on the rate at which classical inf…

quant-ph2026

Precision Bounds for Characterising Quantum Measurements

Aritra Das, Simon K. Yung, Lorcan O. Conlon +6

Quantum measurements, alongside quantum states and processes, form a cornerstone of quantum information processing. However, unlike states and processes, their efficient characteri…