Geometric phases, generated by cyclic evolutions of quantum systems, offer an inspiring playground for advancing fundamental physics and technologies alike. The exotic statistics of anyons realized in physical systems can be interpreted as a topological version of geometric phases. However, non-Abelian statistics has not yet been demonstrated in the laboratory. Here, we use an all-optical quantum system that simulates the statistical evolution of Majorana fermions. As a result, we experimentally realize non-Abelian Berry phases with the topological characteristic that they are invariant under continuous deformations of their control parameters. We implement a universal set of Majorana-inspired gates by performing topological and nontopologi...
Anyons are nonlocal quasi-particles carrying fractional statistics that interpolate between bosons a...
Abstract. We introduce a one-dimensional system of fermionic atoms in an optical lattice whose phase...
We theoretically show that multiport photonic lattices emulating driven quantum harmonic oscillators...
Geometric phases, generated by cyclic evolutions of quantum systems, offer an inspiring playground f...
The realization of Majorana zero modes is in the centre of intense theoretical and experimental inve...
Anyons are particlelike excitations of strongly correlated phases of matter with fractional statisti...
π/8 phase gates (magic gates or T gates) are crucial to augment topological systems based on Majora...
Carrying out fault-tolerant topological quantum computation using non-Abelian anyons (e.g., Majorana...
Recently, topological excitations obeying non-Abelian statistics attracted intensive attention becau...
Topological quantum computing seeks to store and manipulate information in a protected manner using ...
We experimentally simulate the exchange of Majorana zero modes with a photonic quantum simulator. Ou...
Anyons are particlelike excitations of strongly correlated phases of matter with fractional statisti...
Distinct from the dynamical phase, in a cyclic evolution, a system’s state may acquire an additional...
Topological degeneracy is the degeneracy of the ground states in a many-body system in the large-sys...
The quest for realization of non-Abelian phases of matter, driven by their possible use in fault-tol...
Anyons are nonlocal quasi-particles carrying fractional statistics that interpolate between bosons a...
Abstract. We introduce a one-dimensional system of fermionic atoms in an optical lattice whose phase...
We theoretically show that multiport photonic lattices emulating driven quantum harmonic oscillators...
Geometric phases, generated by cyclic evolutions of quantum systems, offer an inspiring playground f...
The realization of Majorana zero modes is in the centre of intense theoretical and experimental inve...
Anyons are particlelike excitations of strongly correlated phases of matter with fractional statisti...
π/8 phase gates (magic gates or T gates) are crucial to augment topological systems based on Majora...
Carrying out fault-tolerant topological quantum computation using non-Abelian anyons (e.g., Majorana...
Recently, topological excitations obeying non-Abelian statistics attracted intensive attention becau...
Topological quantum computing seeks to store and manipulate information in a protected manner using ...
We experimentally simulate the exchange of Majorana zero modes with a photonic quantum simulator. Ou...
Anyons are particlelike excitations of strongly correlated phases of matter with fractional statisti...
Distinct from the dynamical phase, in a cyclic evolution, a system’s state may acquire an additional...
Topological degeneracy is the degeneracy of the ground states in a many-body system in the large-sys...
The quest for realization of non-Abelian phases of matter, driven by their possible use in fault-tol...
Anyons are nonlocal quasi-particles carrying fractional statistics that interpolate between bosons a...
Abstract. We introduce a one-dimensional system of fermionic atoms in an optical lattice whose phase...
We theoretically show that multiport photonic lattices emulating driven quantum harmonic oscillators...