@article{a90ccdf9f8d243a0b9e073f920fdf747,
title = "Subdecoherence Time Generation and Detection of Orbital Entanglement in Quantum Dots",
abstract = "Recent experiments have demonstrated subdecoherence time control of individual single-electron orbital qubits. Here we propose a quantum-dot-based scheme for generation and detection of pairs of orbitally entangled electrons on a time scale much shorter than the decoherence time. The electrons are entangled, via two-particle interference, and transferred to the detectors during a single cotunneling event, making the scheme insensitive to charge noise. For sufficiently long detector dot lifetimes, cross-correlation detection of the dot charges can be performed with real-time counting techniques, providing for an unambiguous short-time Bell inequality test of orbital entanglement.",
author = "Fredrik Brange and Ognjen Malkoc and Peter Samuelsson",
year = "2015",
doi = "10.1103/PhysRevLett.114.176803",
language = "English",
volume = "114",
journal = "Physical Review Letters",
issn = "1079-7114",
publisher = "American Physical Society",
}