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Decoherence of Anyonic Charge in Interferometry Measurements

Parsa Bonderson, Kirill Shtengel, J. K. Slingerland

TL;DR

It is found that superpositions of distinct anyonic charges a and a' in the target decohere are found when the probes have nontrivial monodromy with the charges that may be fused with a to give a'.

Abstract

We examine interferometric measurements of the topological charge of (non-Abelian) anyons. The target's topological charge is measured from its effect on the interference of probe particles sent through the interferometer. We find that superpositions of distinct anyonic charges a and a' in the target decohere (exponentially in the number of probes particles used) when the probes have nontrivial monodromy with the charges that may be fused with a to give a'.

Decoherence of Anyonic Charge in Interferometry Measurements

TL;DR

It is found that superpositions of distinct anyonic charges a and a' in the target decohere are found when the probes have nontrivial monodromy with the charges that may be fused with a to give a'.

Abstract

We examine interferometric measurements of the topological charge of (non-Abelian) anyons. The target's topological charge is measured from its effect on the interference of probe particles sent through the interferometer. We find that superpositions of distinct anyonic charges a and a' in the target decohere (exponentially in the number of probes particles used) when the probes have nontrivial monodromy with the charges that may be fused with a to give a'.

Paper Structure

This paper contains 18 equations, 1 figure.

Figures (1)

  • Figure 1: A Mach-Zehnder interferometer containing the target anyon(s) $A$, to be probed by the anyons $B_k$. (Detectors not shown.)