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Related papers: Interferometry of non-Abelian Anyons

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Aharonov-Bohm interferometry is the most direct probe of anyonic statistics in the quantum Hall effect. The technique involves oscillations of the electric current as a function of the magnetic field and is not applicable to Kitaev spin…

Mesoscale and Nanoscale Physics · Physics 2021-10-12 Zezhu Wei , V. F. Mitrović , D. E. Feldman

We investigated the estimation of an unknown Gaussian process (containing displacement, squeezing and phase-shift) applied to a matter system. The state of the matter system is not directly measured; instead, we measure an optical mode…

Quantum Physics · Physics 2017-08-09 László Ruppert , Radim Filip

We develop the theory of electronic Mach-Zehnder interferometers built from quantum Hall edge states at Landau level filling factor \nu = 2, which have been investigated in a series of recent experiments and theoretical studies. We show…

Strongly Correlated Electrons · Physics 2013-04-11 M. J. Rufino , D. L. Kovrizhin , J. T. Chalker

Recently, it was argued that the braiding and statistics of anyons in a two-dimensional topological phase can be extracted by studying the quantum entanglement of the degenerate ground-states on the torus. This construction either required…

Strongly Correlated Electrons · Physics 2015-01-28 Yi Zhang , Tarun Grover , Ashvin Vishwanath

We develop a theoretical description of interaction-induced phenomena in an electronic Mach-Zehnder interferometer formed by integer quantum Hall edge states (with \nu =1 and 2 channels) out of equilibrium. Using the non-equilibrium…

Mesoscale and Nanoscale Physics · Physics 2015-05-27 Martin Schneider , Dmitry A. Bagrets , Alexander D. Mirlin

Low-dimensional quantum systems can host anyons, particles with exchange statistics that are neither bosonic nor fermionic. Despite indications of a wealth of exotic phenomena, the physics of anyons in one dimension (1D) remains largely…

Two-particle interferometry is an important tool for extracting the exchange statistics of quantum particles. We theoretically investigate the prospects of such interferometry to probe the statistics of point-like anyonic excitations…

Mesoscale and Nanoscale Physics · Physics 2025-06-06 Sushanth Varada , Christian Spånslätt , Matteo Acciai

Anyons are quasiparticles with fractional statistics, bridging between fermions and bosons. We propose an experimental setup to measure the statistical angle of topological anyons emitted from a quantum point contact (QPC) source. The setup…

Detecting Majorana zero modes (MZMs) in topological superconductors remains challenging, as localized non-topological states can mimic MZM signatures. Here, we propose electron interferometry by non-local transport measurements as a…

Mesoscale and Nanoscale Physics · Physics 2024-10-11 Nadav Drechsler , Omri Lesser , Yuval Oreg

Topological quantum computation has recently emerged as one of the most exciting approaches to constructing a fault-tolerant quantum computer. The proposal relies on the existence of topological states of matter whose quasiparticle…

Strongly Correlated Electrons · Physics 2009-11-13 Chetan Nayak , Steven H. Simon , Ady Stern , Michael Freedman , Sankar Das Sarma

We analyze the operation of a novel sensor based on atom interferometry, which can achieve supra-classical sensitivity by exploiting quantum correlations in mixed states of many qubits. The interferometer is based on quantum gates which use…

Quantum Physics · Physics 2016-02-05 Calum MacCormick , Silvia Bergamini , Chris Mansell , Hugo Cable , Kavan Modi

A collider, where particles are injected to a beam splitter from opposite sides, has been used for identifying quantum statistics of identical particles. The collision leads to bunching of the particles for bosons and antibunching for…

Mesoscale and Nanoscale Physics · Physics 2022-11-10 June-Young M. Lee , H. -S. Sim

The fusion of non-Abelian anyons or topological defects is a fundamental operation in measurement-only topological quantum computation. In topological superconductors, this operation amounts to a determination of the shared fermion parity…

Mesoscale and Nanoscale Physics · Physics 2025-09-09 Morteza Aghaee , Alejandro Alcaraz Ramirez , Zulfi Alam , Rizwan Ali , Mariusz Andrzejczuk , Andrey Antipov , Mikhail Astafev , Amin Barzegar , Bela Bauer , Jonathan Becker , Umesh Kumar Bhaskar , Alex Bocharov , Srini Boddapati , David Bohn , Jouri Bommer , Leo Bourdet , Arnaud Bousquet , Samuel Boutin , Lucas Casparis , Benjamin James Chapman , Sohail Chatoor , Anna Wulff Christensen , Cassandra Chua , Patrick Codd , William Cole , Paul Cooper , Fabiano Corsetti , Ajuan Cui , Paolo Dalpasso , Juan Pablo Dehollain , Gijs de Lange , Michiel de Moor , Andreas Ekefjärd , Tareq El Dandachi , Juan Carlos Estrada Saldaña , Saeed Fallahi , Luca Galletti , Geoff Gardner , Deshan Govender , Flavio Griggio , Ruben Grigoryan , Sebastian Grijalva , Sergei Gronin , Jan Gukelberger , Marzie Hamdast , Firas Hamze , Esben Bork Hansen , Sebastian Heedt , Zahra Heidarnia , Jesús Herranz Zamorano , Samantha Ho , Laurens Holgaard , John Hornibrook , Jinnapat Indrapiromkul , Henrik Ingerslev , Lovro Ivancevic , Thomas Jensen , Jaspreet Jhoja , Jeffrey Jones , Konstantin V. Kalashnikov , Ray Kallaher , Rachpon Kalra , Farhad Karimi , Torsten Karzig , Evelyn King , Maren Elisabeth Kloster , Christina Knapp , Dariusz Kocon , Jonne Koski , Pasi Kostamo , Mahesh Kumar , Tom Laeven , Thorvald Larsen , Jason Lee , Kyunghoon Lee , Grant Leum , Kongyi Li , Tyler Lindemann , Matthew Looij , Julie Love , Marijn Lucas , Roman Lutchyn , Morten Hannibal Madsen , Nash Madulid , Albert Malmros , Michael Manfra , Devashish Mantri , Signe Brynold Markussen , Esteban Martinez , Marco Mattila , Robert McNeil , Antonio B. Mei , Ryan V. Mishmash , Gopakumar Mohandas , Christian Mollgaard , Trevor Morgan , George Moussa , Chetan Nayak , Jens Hedegaard Nielsen , Jens Munk Nielsen , William Hvidtfelt Padkær Nielsen , Bas Nijholt , Mike Nystrom , Eoin O'Farrell , Thomas Ohki , Keita Otani , Brian Paquelet Wütz , Sebastian Pauka , Karl Petersson , Luca Petit , Dima Pikulin , Guen Prawiroatmodjo , Frank Preiss , Eduardo Puchol Morejon , Mohana Rajpalke , Craig Ranta , Katrine Rasmussen , David Razmadze , Outi Reentila , David J. Reilly , Yuan Ren , Ken Reneris , Richard Rouse , Ivan Sadovskyy , Lauri Sainiemi , Irene Sanlorenzo , Emma Schmidgall , Cristina Sfiligoj , Mustafeez Bashir Shah , Kevin Simoes , Shilpi Singh , Sarat Sinha , Thomas Soerensen , Patrick Sohr , Tomas Stankevic , Lieuwe Stek , Eric Stuppard , Henri Suominen , Judith Suter , Sam Teicher , Nivetha Thiyagarajah , Raj Tholapi , Mason Thomas , Emily Toomey , Josh Tracy , Michelle Turley , Shivendra Upadhyay , Ivan Urban , Kevin Van Hoogdalem , David J. Van Woerkom , Dmitrii V. Viazmitinov , Dominik Vogel , John Watson , Alex Webster , Joseph Weston , Georg W. Winkler , Di Xu , Chung Kai Yang , Emrah Yucelen , Roland Zeisel , Guoji Zheng , Justin Zilke

Topological quantum phases cannot be characterized by Ginzburg-Landau type order parameters, and are instead described by non-local topological invariants. Experimental platforms capable of realizing such exotic states now include…

We propose a Hanbury Brown-Twiss interferometer for a $\nu=2/5$ fractional quantum Hall edge system, in which quasiparticles tunnel between two co-propagating edge modes. In contrast to the previously studied anyonic Fabry-P\'{e}rot and…

The edge modes of fractional quantum Hall liquids are described by chiral Luttinger liquid theory. Despite many years of experimental investigation fractional quantum Hall edge modes remain enigmatic with significant discrepancies between…

We experimentally demonstrate the nonlocal reversal of a partial-collapse quantum measurement on two-photon entangled state. Both the partial measurement and the reversal operation are implemented in linear optics with two displaced Sagnac…

Quantum Physics · Physics 2015-05-20 Xiao-Ye Xu , Jin-Shi Xu , Chuan-Feng Li , Yang Zou , Guang-Can Guo

We propose an approach to measure the quantum phase of an electron in a non-Abelian system using the algorithm of Quantum Phase Estimation (QPE). The discrete-path systems were previously studied in the context of square or rectangular…

Quantum Physics · Physics 2025-09-15 Seng Ghee Tan , Son-Hsien Chen , Ying-Cheng Yang , Yen-Fu Chen , Yen-Lin Chen , Chia-Hsiu Hsieh

Recent experiments involving semiconducting quantum dots embedded in Aharonov-Bohm interferometry setups suggest that information concerning the phase of electron wavefunctions can be obtained from transport measurements. Here we review the…

Mesoscale and Nanoscale Physics · Physics 2007-05-23 Yuval Gefen

We study quantum Hall interferometers in which the interference loop encircles a quantum anti-dot. We base our study on thermodynamic considerations, which we believe reflect the essential aspects of interference transport phenomena. We…

Mesoscale and Nanoscale Physics · Physics 2015-10-20 Sarah Levy Schreier , Ady Stern , Bernd Rosenow , Bertrand. I. Halperin
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