most citedResource-efficient universal photonic processor based on time-multiplexed hybrid architectures

1 citations · 1 across the 2 of their papers we have counts for

collaborators

6 papers

quant-ph2026

Demonstration of unpartible entanglement

Philip Held, Laura Ares, Federico Pegoraro +4

We report on the first experimental verification of mode-independent entanglement. Commonly, the entanglement of a state is firmly based on pre-defined parties that are correlated,…

quant-ph20261 cited

Resource-efficient universal photonic processor based on time-multiplexed hybrid architectures

Jonas Lammers, Laura Ares, Federico Pegoraro +4

For the ever-growing field of quantum information processing, large-scale, efficient multi-port interferometers serving as photonic processors are required. In this context, the su…

quant-ph2026

Demonstration of a quantum C-NOT Gate in a Time-Multiplexed fully reconfigurable photonic processor

Federico Pegoraro, Philip Held, Jonas Lammers +2

The two-qubit controlled-not (C-NOT) gate is an essential component for gate-based quantum circuits. In fact, its operation, combined with single qubit rotations allows to realise…

quant-ph2026

Benchmarking Gaussian and non-Gaussian input states with a hybrid sampling platform

Michael Stefszky, Kai-Hong Luo, Jan-Lucas Eickmann +22

The original boson sampling paradigm-consisting of multiple single-photon input states, a large interferometer, and multi-channel click detection-was originally proposed as a photo…

quant-ph2026

Bridging chemistry and Gaussian boson sampling: A photonic hierarchy of approximations for molecular vibronic spectra

Jan-Lucas Eickmann, Kai-Hong Luo, Mikhail Roiz +10

Simulating vibronic spectra is a central task in physical chemistry, offering insight into important properties of molecules. Recently, it has been experimentally demonstrated that…

quant-ph2025

Two Photon Tripartite Entanglement Transfer via Time-Multiplexed Quantum Walks

Jonas Lammers, Federico Pegoraro, Philip Held +3

Photonic multidimensional quantum networks (MDQN), where individual subsystems are encoded using multiple degrees of freedom and photons, are an emerging platform for quantum algor…