activity
20072022
most citedGeometric phase from Aharonov-Bohm to Pancharatnam-Berry and beyond

302 citations · 1.4k across the 22 of their papers we have counts for

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Showing 2021Show all

6 papers · 1 filter

quant-ph20211 cited

Quantum Face Recognition Protocol with Ghost Imaging

Vahid Salari, Dilip Paneru, Erhan Saglamyurek +6

Face recognition is one of the most ubiquitous examples of pattern recognition in machine learning, with numerous applications in security, access control, and law enforcement, amo…

physics.ins-det2021

Symmetry and planar chirality of a protein measured on an angular basis in a transmission electron microscope

A. H. Tavabi, P. Rosi, R. B. G. Ravelli +16

In quantum mechanics, each conserved quantity (e.g., energy, position, linear momentum and angular momentum) is associated with a Hermitian operator. Its expected value can then be…

quant-ph20213 cited

One-dimensional ghost imaging with an electron microscope: a route towards ghost imaging with inelastically scattered electrons

E. Rotunno, S. Gargiulo, G. M. Vanacore +11

In quantum mechanics, entanglement and correlations are not just a mere sporadic curiosity, but rather common phenomena at the basis of an interacting quantum system. In electron m…

quant-ph2021

Full-mode Characterisation of Correlated Photon Pairs Generated in Spontaneous Downconversion

Alessio D'Errico, Felix Hufnagel, Filippo Miatto +2

Spontaneous parametric downconversion is the primary source to generate entangled photon pairs in quantum photonics laboratories. Depending on the experimental design, the generate…

physics.optics2021

Polychromatic Electric Field Knots

Manuel F. Ferrer-Garcia, Alessio D'Errico, Alicia Sit +2

The polarization of a monochromatic optical beam lies in a plane, and in general, is described by an ellipse, known as the polarization ellipse. The polarization ellipse in the tig…

quant-ph2021

Achieving ultimate noise tolerance in quantum communication

Frédéric Bouchard, Duncan England, Philip J. Bustard +4

At the fundamental level, quantum communication is ultimately limited by noise. For instance, quantum signals cannot be amplified without the introduction of noise in the amplified…