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Workshop on Tensor Network States:Algorithms and Applications     Workshop  Tensor Network States  Algorithms  Applications       font style='font-size:12px;'> 2018/1/11
Tensor network states have in recent years emerged as a powerful theoretical tool to study quantum collective phenomena. Some of the most popular tensor networks, such as the matrix product state (MPS...
This conference will bring together the key international players in the ongoing efforts towards a topologically protected platform for quantum computation based on Majorana states.Different sessions ...
We consider a three dimensional lattice U(1)×U(1) and [U(1)]N superconductors in the London limit with individually conserved condensates. The U(1)×U(1) problem, generically, has two types of intercom...
We show that the surface states in topological insulators can be understood based on a well-known Shockley model, a one-dimensional tight-binding model with two atoms per elementary cell, connected vi...
By means of first-principles calculations within the density functional theory, we study the structural and optical properties of codoped ZnO nanowires and compare them with those of the bulk and film...
The electronic structure of Sb(110) is studied by angle-resolved photoemission spectroscopy and first-principle calculations, revealing several electronic surface states in the projected bulk band gap...
We study ultracold bosons in a one-dimensional rotating ring lattice with a weak potential barrier well below unit filling. Due to the potential barrier the eigenstates are superpositions of different...
We propose a random matrix approach to describe vibrational excitations in disordered systems. The dynamical matrix M is taken in the form M = AAT where A is some real (not generally symmetric) rand...
We study Andreev bound state (ABS) and surface density of state (SDOS) of non-centrosymmetric superconductor where spin-singlet d-wave pairing mixes with spin-triplet p (or f)-wave one by spinorbit c...
Density of states of a graphene in the presence of strong point defects      graphene  strong point defects        font style='font-size:12px;'> 2010/11/19
The density of states near zero energy in a graphene due to strong point defects with random positions are computed. Instead of focusing on density of states directly, we analyze eigenfunctions of in...
The phenomena of the microwave induced zero resistance states (MIZRS) and the microwave induced resistance oscillations (MIRO) were discovered in the ultraclean two-dimensional electron systems in 20...
We have developed a discrete-lattice approach to calculate the conductance spectra between a normal-metal and an s-wave Larkin-Ovchinnikov (LO) superconductor, with the junction interface oriented a...
We present the results of ab-initio density functional theory based calculations of the stability and reconstruction of zigzag edges in triangular graphene quantum dots. We show that, while the recons...
An NQR experiment revealed superconductivity of Pr2Ba4Cu7O15− (Pr247) to be realized on CuO double chain layers and suggests possibility of novel one-dimensional(1D) superconduc- tivity. To c...
As an “input” state of a linear (Mach-Zehnder or Ramsey) interferometer, the phase-squeezed state proposed by Berry and Wiseman exhibits the best sensitivity approaching to the Heisenberg limit [Phy...

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