Majorana zero modes and topological quantum computation
Нулевые моды Майораны и топологические квантовые вычисления
2015-10-26
SCID: 54.1/27vpz3fw
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Majorana zero modesfractional quantum Hall systemsnon-Abelian braiding statisticssemiconductor nanowirestopological quantum computation
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Abstract (AI)
Abstract We provide a current perspective on the rapidly developing field of Majorana zero modes (MZMs) in solid-state systems. We emphasise the theoretical prediction, experimental realisation and potential use of MZMs in future information processing devices through braiding-based topological quantum computation (TQC). Well-separated MZMs should manifest non-Abelian braiding statistics suitable for unitary gate operations for TQC. Recent experimental work, following earlier theoretical predictions, has shown specific signatures consistent with the existence of Majorana modes localised at the ends of semiconductor nanowires in the presence of superconducting proximity effect. We discuss the experimental findings and their theoretical analyses, and provide a perspective on the extent to which the observations indicate the existence of anyonic MZMs in solid-state systems. We also discuss fractional quantum Hall systems (the 5/2 state), which have been extensively studied in the context of non-Abelian anyons and TQC. We describe proposed schemes for carrying out braiding with MZMs as well as the necessary steps for implementing TQC.
Key Findings
1
Experiments on proximitized semiconductor nanowires have observed signatures consistent with Majorana modes localized at their ends.
2
Fractional quantum Hall systems, particularly the 5/2 state, provide an important platform for studying non-Abelian anyons and topological quantum computation.
3
Proposed Majorana braiding schemes identify the operations and implementation steps needed to realize topological quantum computation.
4
The extent to which current observations establish the existence of anyonic Majorana zero modes in solid-state systems remains an open question requiring theoretical analysis.
5
Well-separated Majorana zero modes are theoretically expected to exhibit non-Abelian braiding statistics, enabling unitary gates for topological quantum computation.
Research Object
Majorana zero modes in solid-state systems, particularly at the ends of superconducting-proximitized semiconductor nanowires and in fractional quantum Hall systems
Research Subject
Their existence and signatures, non-Abelian braiding statistics, and potential use in braiding-based topological quantum computation
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2015-10-26
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