Significant efforts have focused on the magnetic excitations of relativistic Mott insulators, predicted to realize the Kitaev quantum spin liquid (QSL). This exactly solvable model involves a highly entangled state resulting from bond-dependent Ising interactions that produce excitations which are non-local in terms of spin flips. A key challenge in real materials is identifying the relative size of the non-Kitaev terms and their role in the emergence or suppression of fractional excitations. Here, we identify the energy and temperature boundaries of non-Kitaev interactions by direct comparison of the Raman susceptibility of α-RuCl3 with quantum Monte Carlo (QMC) results for the Kitaev QSL. Moreover, we further confirm the fractional nature...
Geometrical constraints to the electronic degrees of freedom within condensed-matter systems often g...
It is known that amp; 120572; RuCl3 has been studied extensively because of its proximity to the Ki...
α-RuCl$_{3}$ is a major candidate for the realization of the Kitaev quantum spin liquid, but its zig...
Quantum spin liquids (QSLs) are topological states of matter exhibiting remarkable properties such a...
It is known that alpha RuCl3 has been studied extensively because of its proximity to the Kitaev qua...
It is known that -RuCl3 has been studied extensively because of its proximity to the Kitaev quantum-...
The celebrated Kitaev quantum spin liquid (QSL) is the paradigmatic example of a topological magnet ...
The celebrated Kitaev quantum spin liquid (QSL) is the paradigmatic example of a topological magnet ...
Conventionally ordered magnets possess bosonic elementary excitations, called magnons. By contrast, ...
International audienceThe pure Kitaev honeycomb model harbors a quantum spin liquid in zero magnetic...
Conventionally ordered magnets possess bosonic elementary excitations, called magnons. By contrast, ...
The pure Kitaev honeycomb model harbors a quantum spin liquid in zero magnetic fields, while applyin...
Fractionalized excitations are of considerable interest in recent condensed-matter physics. Fraction...
Geometrical constraints to the electronic degrees of freedom within condensed-matter systems often g...
It is known that amp; 120572; RuCl3 has been studied extensively because of its proximity to the Ki...
α-RuCl$_{3}$ is a major candidate for the realization of the Kitaev quantum spin liquid, but its zig...
Quantum spin liquids (QSLs) are topological states of matter exhibiting remarkable properties such a...
It is known that alpha RuCl3 has been studied extensively because of its proximity to the Kitaev qua...
It is known that -RuCl3 has been studied extensively because of its proximity to the Kitaev quantum-...
The celebrated Kitaev quantum spin liquid (QSL) is the paradigmatic example of a topological magnet ...
The celebrated Kitaev quantum spin liquid (QSL) is the paradigmatic example of a topological magnet ...
Conventionally ordered magnets possess bosonic elementary excitations, called magnons. By contrast, ...
International audienceThe pure Kitaev honeycomb model harbors a quantum spin liquid in zero magnetic...
Conventionally ordered magnets possess bosonic elementary excitations, called magnons. By contrast, ...
The pure Kitaev honeycomb model harbors a quantum spin liquid in zero magnetic fields, while applyin...
Fractionalized excitations are of considerable interest in recent condensed-matter physics. Fraction...
Geometrical constraints to the electronic degrees of freedom within condensed-matter systems often g...
It is known that amp; 120572; RuCl3 has been studied extensively because of its proximity to the Ki...
α-RuCl$_{3}$ is a major candidate for the realization of the Kitaev quantum spin liquid, but its zig...