activity
20192022
most citedSimultaneous transmission of hyper-entanglement in 3 degrees of freedom through a multicore fiber

33 citations · 41 across the 2 of their papers we have counts for

collaborators

5 papers

quant-ph2022★ 8 cited

Spatial and spectral characterization of photon pairs at telecommunication-wavelength from type-0 spontaneous parametric down-conversion

Evelyn A. Ortega, Jorge Fuenzalida, Mirela Selimovic +7

The thorough characterization of entangled-photon sources is vital for their optimal use in quantum communication. However, this task is not trivial at telecommunication wavelength…

quant-ph2022★ 33 cited

Simultaneous transmission of hyper-entanglement in 3 degrees of freedom through a multicore fiber

Lukas Achatz, Lukas Bulla, Evelyn A. Ortega +5

Entanglement distribution is at the heart of most quantum communication protocols. Inevitable loss of photons along quantum channels is a major obstacle for distributing entangled…

quant-ph2020

Certifying position-momentum entanglement at telecommunication wavelengths

Lukas Achatz, Evelyn Ortega, Krishna Dovzhik +5

TheThe successful employment of high-dimensional quantum correlations and its integration in telecommunication infrastructures is vital in cutting-edge quantum technologies for inc…

quant-ph2020

Experimental wavelength-multiplexed entanglement-based quantum cryptography

Johannes Pseiner, Lukas Achatz, Lukas Bulla +2

In state-of-the-art quantum key distribution (QKD) systems, the main limiting factor in increasing the key generation rate is the timing resolution in detecting photons. Here, we p…

physics.ins-det2019

Proof of Principle for Ramsey-type Gravity Resonance Spectroscopy with qBounce

René I. P. Sedmik, Joachim Bosina, Lukas Achatz +10

Ultracold neutrons (UCNs) are formidable probes in precision tests of gravity. With their negligible electric charge, dielectric moment, and polarizability they naturally evade som…