Magnetization plateaus in quantum magnets—where bosonic quasiparticles crystallize into emergent spin superlattices—are spectacular yet simple examples of collective quantum phenomena escaping classical description. While magnetization plateaus have been observed in a number of spin-1/2 antiferromagnets, the description of their magnetic excitations remains an open theoretical and experimental challenge. Here, we investigate the dynamical properties of the triangular-lattice spin-1/2 antiferromagnet Ba3CoSb2O9 in its one-third magnetization plateau phase using a combination of nonlinear spin-wave theory and neutron scattering measurements. The agreement between our theoretical treatment and the experimental data demonstrates that magnons be...
The magnetic field evolution of ground spin states of the stacked planar triangular antiferromagnet...
In geometrically frustrated materials with low-dimensional and small spin moment, the quantum fluctu...
Low dimensional quantum magnets are interesting because of the emerging collective behavior arising ...
Magnetization plateaus in quantum magnets—where bosonic quasiparticles crystallize into emergent spi...
We explore the magnetic excitations of the spin-1/2 triangular antiferromagnet Ba3CoSb2O9 in its 120...
Ba$_3$CoSb$_2$O$_9$ approximates the two-dimensional spin-1/2 triangular-lattice Heisenberg antiferr...
We report results of the neutron scattering investigations of frustrated quantum magnet Ba3CoSb2O9 i...
Quantum fluctuations in the effective spin-1/2 layered structure triangular-lattice quantum Heisenbe...
Quantum fluctuations in the effective spin- 1/2 layered triangular-lattice quantum Heisenberg antife...
Cs2 CuBr4 and Ba3 NiSb2 O9 are magnetically described as quasi-two-dimensional triangular-lattice an...
The geometrically frustrated magnetism(GFM) is an energetic field of research in condensed matter ma...
An exact mapping between quantum spins and boson gases provides fresh approaches to the creation of ...
Spin 1 2 triangular lattice Heisenberg antiferromagnet has been accepted as an ideal system for quan...
We investigate the excitation spectrum of the triangular-lattice antiferromagnetic XXZ model using s...
Investigation of dynamical excitations is difficult but crucial to the understanding of many exotic ...
The magnetic field evolution of ground spin states of the stacked planar triangular antiferromagnet...
In geometrically frustrated materials with low-dimensional and small spin moment, the quantum fluctu...
Low dimensional quantum magnets are interesting because of the emerging collective behavior arising ...
Magnetization plateaus in quantum magnets—where bosonic quasiparticles crystallize into emergent spi...
We explore the magnetic excitations of the spin-1/2 triangular antiferromagnet Ba3CoSb2O9 in its 120...
Ba$_3$CoSb$_2$O$_9$ approximates the two-dimensional spin-1/2 triangular-lattice Heisenberg antiferr...
We report results of the neutron scattering investigations of frustrated quantum magnet Ba3CoSb2O9 i...
Quantum fluctuations in the effective spin-1/2 layered structure triangular-lattice quantum Heisenbe...
Quantum fluctuations in the effective spin- 1/2 layered triangular-lattice quantum Heisenberg antife...
Cs2 CuBr4 and Ba3 NiSb2 O9 are magnetically described as quasi-two-dimensional triangular-lattice an...
The geometrically frustrated magnetism(GFM) is an energetic field of research in condensed matter ma...
An exact mapping between quantum spins and boson gases provides fresh approaches to the creation of ...
Spin 1 2 triangular lattice Heisenberg antiferromagnet has been accepted as an ideal system for quan...
We investigate the excitation spectrum of the triangular-lattice antiferromagnetic XXZ model using s...
Investigation of dynamical excitations is difficult but crucial to the understanding of many exotic ...
The magnetic field evolution of ground spin states of the stacked planar triangular antiferromagnet...
In geometrically frustrated materials with low-dimensional and small spin moment, the quantum fluctu...
Low dimensional quantum magnets are interesting because of the emerging collective behavior arising ...