The Shasty-Sutherland model, which consists of a set of spin 1/2 dimers on a 2D square lattice, is simple and soluble but captures a central theme of condensed matter physics by sitting precariously on the quantum edge between isolated, gapped excitations and collective, ordered ground states. We compress the model Shastry-Sutherland material, SrCu_2(BO_3)_2, in a diamond anvil cell at cryogenic temperatures to continuously tune the coupling energies and induce changes in state. High-resolution X-ray measurements exploit what emerges as a remarkably strong spin-lattice coupling to both monitor the magnetic behavior and the absence or presence of structural discontinuities. In the low-pressure spin-singlet regime, the onset of magnetism resu...
Proximity to magnetic order as well as low dimensionality are both beneficial to superconductivity a...
Dimensionality and symmetry play deterministic roles in the laws of Nature. They are important tools...
Using density-functional theory (DFT) band-structure calculations, we study the crystal structure, l...
Quantum spins placed on the corners of a square lattice can dimerize and form singlets, which then c...
Motivated by the ongoing investigation of SrCu2(BO 3)2 under pressure, we study a variant of the two...
An exact mapping between quantum spins and boson gases provides fresh approaches to the creation of ...
We report heat capacity measurements of SrCu₂(BO₃)₂ under high pressure along with simulations of re...
Antiferromagnets are choice systems to study quantum critical behavior. Unlike ferromagnets, they ca...
Advances in solid-state and atomic physics are exposing the hidden relationships between conventiona...
Quantum triangular-lattice antiferromagnets are important prototype systems to investigate numerous ...
Motivated by the intriguing properties of the Shastry-Sutherland compound SrCu2(BO3)2 under pressure...
The deconfined quantum critical point (DQCP) represents a paradigm shift in quantum matter studies, ...
The connection between electronic and structural degrees of freedom—whether successive, coincident, ...
The structural and magnetic properties of deuterated herbertsmithite have been studied by means of n...
We report the microscopic magnetic model for the spin-1/2 Heisenberg system CdCu 2(BO 3) 2, one of t...
Proximity to magnetic order as well as low dimensionality are both beneficial to superconductivity a...
Dimensionality and symmetry play deterministic roles in the laws of Nature. They are important tools...
Using density-functional theory (DFT) band-structure calculations, we study the crystal structure, l...
Quantum spins placed on the corners of a square lattice can dimerize and form singlets, which then c...
Motivated by the ongoing investigation of SrCu2(BO 3)2 under pressure, we study a variant of the two...
An exact mapping between quantum spins and boson gases provides fresh approaches to the creation of ...
We report heat capacity measurements of SrCu₂(BO₃)₂ under high pressure along with simulations of re...
Antiferromagnets are choice systems to study quantum critical behavior. Unlike ferromagnets, they ca...
Advances in solid-state and atomic physics are exposing the hidden relationships between conventiona...
Quantum triangular-lattice antiferromagnets are important prototype systems to investigate numerous ...
Motivated by the intriguing properties of the Shastry-Sutherland compound SrCu2(BO3)2 under pressure...
The deconfined quantum critical point (DQCP) represents a paradigm shift in quantum matter studies, ...
The connection between electronic and structural degrees of freedom—whether successive, coincident, ...
The structural and magnetic properties of deuterated herbertsmithite have been studied by means of n...
We report the microscopic magnetic model for the spin-1/2 Heisenberg system CdCu 2(BO 3) 2, one of t...
Proximity to magnetic order as well as low dimensionality are both beneficial to superconductivity a...
Dimensionality and symmetry play deterministic roles in the laws of Nature. They are important tools...
Using density-functional theory (DFT) band-structure calculations, we study the crystal structure, l...