VK: Low Temperature LaboratoryThe entanglement of coherently split electron-hole pairs in an electronic conductor is typically not considered accessible due to particle number conservation and fermionic superselection rules. We demonstrate here that current cross-correlation measurements at the outputs of an electronic Mach-Zehnder interferometer can nevertheless provide a robust witness of electron-hole entanglement. Specifically, we consider neutral excitations generated by modulating the transmission of an unbiased quantum point contact periodically in time. For an optimized modulation profile, an entangled state with one positively-charged leviton (a hole) and one negatively-charged leviton (an electron) gets delocalized over the two pa...
14 pages, 6 figuresThe possibility for detecting energy entanglement in normal metal - superconducto...
Motivated by recent progress in electron quantum optics, we revisit the question of single-electron ...
International audienceThe complete knowledge of a quantum state allows the prediction of the probabi...
We show that current correlations at the exit ports of a beam sphtter can be used to detect electron...
In this work we discuss a theory for entanglement generation, characterization and detection in ferm...
International audienceWe consider the electronic analog of the quantum optics Hong-Ou-Mandel interfe...
We present a theory for two-particle entanglement production and detection in mesoscopic conductors ...
We present a theory for two-particle entanglement production and detection in mesoscopic conductors ...
International audienceThe on-demand generation of pure quantum excitations is important for the oper...
We propose a scheme for dynamically creating orbitally entangled electron-hole pairs through a time-...
Despite great efforts, an unambiguous demonstration of entanglement of mobile electrons in solid sta...
We review our recent proposals for the on-demand generation of entangled few-electron states using d...
International audienceEngineering and studying few-electron states in ballistic conductors is a key ...
14 pages, 6 figuresThe possibility for detecting energy entanglement in normal metal - superconducto...
Motivated by recent progress in electron quantum optics, we revisit the question of single-electron ...
International audienceThe complete knowledge of a quantum state allows the prediction of the probabi...
We show that current correlations at the exit ports of a beam sphtter can be used to detect electron...
In this work we discuss a theory for entanglement generation, characterization and detection in ferm...
International audienceWe consider the electronic analog of the quantum optics Hong-Ou-Mandel interfe...
We present a theory for two-particle entanglement production and detection in mesoscopic conductors ...
We present a theory for two-particle entanglement production and detection in mesoscopic conductors ...
International audienceThe on-demand generation of pure quantum excitations is important for the oper...
We propose a scheme for dynamically creating orbitally entangled electron-hole pairs through a time-...
Despite great efforts, an unambiguous demonstration of entanglement of mobile electrons in solid sta...
We review our recent proposals for the on-demand generation of entangled few-electron states using d...
International audienceEngineering and studying few-electron states in ballistic conductors is a key ...
14 pages, 6 figuresThe possibility for detecting energy entanglement in normal metal - superconducto...
Motivated by recent progress in electron quantum optics, we revisit the question of single-electron ...
International audienceThe complete knowledge of a quantum state allows the prediction of the probabi...