Spectral function of the $J_1-J_2$ Heisenberg model on the triangular lattice

Kavli Affiliate: Joel E. Moore | First 5 Authors: Nicholas E. Sherman, Maxime Dupont, Joel E. Moore, , | Summary: Spectral probes, such as neutron scattering, are crucial for characterizing excitations in quantum many-body systems and the properties of quantum materials. Among the most elusive phases of matter are quantum spin liquids, which have no […]


Continue.. Spectral function of the $J_1-J_2$ Heisenberg model on the triangular lattice

Spectral function of the $J_1-J_2$ Heisenberg model on the triangular lattice

Kavli Affiliate: Joel E. Moore | First 5 Authors: Nicholas E. Sherman, Maxime Dupont, Joel E. Moore, , | Summary: Spectral probes, such as neutron scattering, are crucial for characterizing excitations in quantum many-body systems and the properties of quantum materials. Among the most elusive phases of matter are quantum spin liquids, which have no […]


Continue.. Spectral function of the $J_1-J_2$ Heisenberg model on the triangular lattice

Properties and device performance of BN thin films grown on GaN by pulsed laser deposition

Kavli Affiliate: Xiang Zhang | First 5 Authors: Abhijit Biswas, Mingfei Xu, Kai Fu, Jingan Zhou, Rui Xu | Summary: Wide and ultrawide-bandgap semiconductors lie at the heart of next-generation high-power, high-frequency electronics. Here, we report the growth of ultrawide-bandgap boron nitride (BN) thin films on wide-bandgap gallium nitride (GaN) by pulsed laser deposition. Comprehensive […]


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Structure of domain walls in chiral spin liquids

Kavli Affiliate: Joel E. Moore | First 5 Authors: Yan-Qi Wang, Chunxiao Liu, Joel E. Moore, , | Summary: The chiral spin liquid is one of the canonical examples of a topological state of quantum spins coexisting with symmetry-breaking chiral order; its experimental realization has been actively discussed in the past few years. Here, motivated […]


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A Study on Non-coplanar Baseline Effects for Mingantu Spectral Radioheliograph

Kavli Affiliate: Feng Wang | First 5 Authors: Qiu-ping Yang, Feng Wang, Hui Deng, Ying Mei, Wei Wang | Summary: As a dedicated solar radioheliograph, the MingantU SpEctral RadioHeliograph (MUSER) has a maximum baseline of more than 3000 meters and a frequency range of 400 MHz — 15 GHz. According to the classical radio interferometry […]


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Unidirectional domain growth of h-BN thin films by pulsed laser deposition

Kavli Affiliate: Xiang Zhang | First 5 Authors: Abhijit Biswas, Qiyuan Ruan, Frank Lee, Chenxi Li, Sathvik Ajay Iyengar | Summary: Two-dimensional van der Waals (2D-vdW) layered hexagonal boron nitride (h-BN) has gained tremendous research interest over recent years due to its unconventional domain growth morphology, fascinating properties and application potentials as an excellent dielectric […]


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Room temperature growth of h-BN nanosheets by pulsed laser deposition

Kavli Affiliate: Xiang Zhang | First 5 Authors: Abhijit Biswas, Rishi Maiti, Frank Lee, Cecilia Y. Chen, Tao Li | Summary: Room temperature growth of two-dimensional van der Waals (2D-vdW) materials is indispensable for state-of-the-art nanotechnology as it supersedes the requirement of elevated growth temperature accompanied with additional high thermal budgets, and the possibility of […]


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Personalizing Intervened Network for Long-tailed Sequential User Behavior Modeling

Kavli Affiliate: Feng Wang | First 5 Authors: Zheqi Lv, Feng Wang, Shengyu Zhang, Kun Kuang, Hongxia Yang | Summary: In an era of information explosion, recommendation systems play an important role in people’s daily life by facilitating content exploration. It is known that user activeness, i.e., number of behaviors, tends to follow a long-tail […]


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A General Lattice and Basis Formalism Enabling Efficient and Discretized Exploration of Crystallographic Phase Space

Kavli Affiliate: Kristin Persson | First 5 Authors: David Mrdjenovich, Kristin Persson, , , | Summary: Three-dimensional lattices are fundamental to solid-state physics. The description of a lattice with an atomic basis constitutes the necessary information to predict solid phase properties and evolution. Here, we present a new algorithm for systematically exploring crystallographic phase space. […]


Continue.. A General Lattice and Basis Formalism Enabling Efficient and Discretized Exploration of Crystallographic Phase Space