We develop the general quantum measurement theory of non-Abelian anyons through interference experiments. The paper starts with a terse introduction to the theory of anyon models, focusing on the basic formalism necessary to apply standard quantum measurement theory to such systems. This is then applied to give a detailed analysis of anyonic charge measurements using aMach-Zehnder interferometer for arbitrary anyon models.We find that, as anyonic probes are sent through the legs of the interferometer, superpositions of the total anyonic charge located in the target region collapse when they are distinguishable via monodromy with the probe anyons, which also determines the rate of collapse. We give estimates on the number of probes n...
Entangled states of quantum systems can give rise to measurement correlations of separated observers...
Fractionally charged quasiparticles in the quantum Hall state with a filling factor nu=5/2 are expec...
We examine interferometric experiments in systems that exhibit non-Abelian braiding statistics, expr...
We develop the general quantum measurement theory of non-Abelian anyons through interference experi...
We develop the general quantum measurement theory of non-Abelian anyons through interference experim...
We consider the tunneling current through a double point-contact Fabry-Pérot interferometer such as ...
We examine interferometric measurements of the topological charge of (non-Abelian) anyons. The targe...
We present a theoretical analysis of inequivalent classes of interference experiments with non-abeli...
We show how shot noise in an electronic Mach-Zehnder interferometer in the fractional quantum Hall r...
We consider the tunneling current through a double point-contact Fabry-Pérot interferometer such as ...
Quasi-particles are elementary excitations of condensed matter quantum phases. Demonstrating that th...
Two distinct methods for measuring topological charge in a nonabelian anyonic system have been discu...
We propose a method to extract the mutual exchange statistics of the anyonic excitations of a genera...
Anyons are exotic quasiparticles with fractional charge that can emerge as fundamental excitations o...
Entangled states of quantum systems can give rise to measurement correlations of separated observers...
Fractionally charged quasiparticles in the quantum Hall state with a filling factor nu=5/2 are expec...
We examine interferometric experiments in systems that exhibit non-Abelian braiding statistics, expr...
We develop the general quantum measurement theory of non-Abelian anyons through interference experi...
We develop the general quantum measurement theory of non-Abelian anyons through interference experim...
We consider the tunneling current through a double point-contact Fabry-Pérot interferometer such as ...
We examine interferometric measurements of the topological charge of (non-Abelian) anyons. The targe...
We present a theoretical analysis of inequivalent classes of interference experiments with non-abeli...
We show how shot noise in an electronic Mach-Zehnder interferometer in the fractional quantum Hall r...
We consider the tunneling current through a double point-contact Fabry-Pérot interferometer such as ...
Quasi-particles are elementary excitations of condensed matter quantum phases. Demonstrating that th...
Two distinct methods for measuring topological charge in a nonabelian anyonic system have been discu...
We propose a method to extract the mutual exchange statistics of the anyonic excitations of a genera...
Anyons are exotic quasiparticles with fractional charge that can emerge as fundamental excitations o...
Entangled states of quantum systems can give rise to measurement correlations of separated observers...
Fractionally charged quasiparticles in the quantum Hall state with a filling factor nu=5/2 are expec...
We examine interferometric experiments in systems that exhibit non-Abelian braiding statistics, expr...