dorsal/arxiv
View SchemaFrom Spectral Relaxation to Quantified Decoherence
| Authors | Chr. Balzer, Th. Hannemann, D. Reiß, W. Neuhauser, P. E. Toschek, Chr. Wunderlich |
|---|---|
| Categories | |
| ArXiv ID | quant-ph/0109037 |
| URL | https://arxiv.org/abs/quant-ph/0109037 |
| Journal | Laser Physics 12, 729-735 (2002) |
Abstract
Quantum information processing (QIP) requires thorough assessment of decoherence. Atoms or ions prepared for QIP often become addressed by radiation within schemes of alternating microwave-optical double resonance. A well-defined amount of decoherence may be applied to the system when spurious resonance light is admitted simultaneously with the driving radiation. This decoherence is quantified in terms of longitudinal and transversal relaxation. It may serve for calibrating observed decoherence as well as for testing error-correcting quantum codes.
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"abstract": "Quantum information processing (QIP) requires thorough assessment of\ndecoherence. Atoms or ions prepared for QIP often become addressed by radiation\nwithin schemes of alternating microwave-optical double resonance. A\nwell-defined amount of decoherence may be applied to the system when spurious\nresonance light is admitted simultaneously with the driving radiation. This\ndecoherence is quantified in terms of longitudinal and transversal relaxation.\nIt may serve for calibrating observed decoherence as well as for testing\nerror-correcting quantum codes.",
"arxiv_id": "quant-ph/0109037",
"authors": [
"Chr. Balzer",
"Th. Hannemann",
"D. Rei\u00df",
"W. Neuhauser",
"P. E. Toschek",
"Chr. Wunderlich"
],
"categories": [
"quant-ph"
],
"journal_ref": "Laser Physics 12, 729-735 (2002)",
"title": "From Spectral Relaxation to Quantified Decoherence",
"url": "https://arxiv.org/abs/quant-ph/0109037"
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