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seminar Date  
Date & Time Apr. 5 (Tue.), 4PM 
Venue E6-2. 1st fl. #1322 
Speaker Dr. Ara Go, Columbia University 

"A new impurity solver for multi-orbital systems: adaptive truncation of the Hilbert space"

 

Apr. 5 (Tue.), 4PM, E6-2. 1st fl. #1322
Dr. Ara Go, Columbia University

 

The exact diagonalization (ED) has many attractive advantages as an impurity solver for the dynamical mean-field theory (DMFT). It solves the impurity Hamiltonians with any types of interaction in contrast to the quantum Monte Carlo, which suffers from the severe sign problem in low symmetry situation. However, the ED approximates the continuous bath to a finite quantum mechanical problem to reduce the system size, so that the total number of orbitals is less than 14. This is insufficient, to treat most multi-orbital systems via the DMFT. To overcome this limit, we first adapt the configuration interaction (CI) as an impurity solver. We show the computed optical conductivity through this method is in excellent agreement with the experiment at gap edge. We have further developed adaptive truncations of the Hilbert space, which can handle much larger impurity Hamiltonians without loosing the advantages of the ED. We benchmark the one-dimensional Hubbard model and show that this impurity solver can obtain sufficiently accurate Green functions of impurity Hamiltonian with 24 electronic orbitals. The solvable system size in this method is larger than twice of the ED limit, and this capability enlarges the DMFT applications to many unexplored problems. I also discuss the possible applications, focussing on the multi-orbital systems with low symmetry.

 

Contact: MyungJoon Han, Physics Dept., (mj.han@kaist.ac.kr)

번호 seminar Date Venue 제목
공지     Spring 2019: Physics Seminar Serises
공지     Spring 2019: Physics Colloquium
공지   Seminar Room #1323  Fall 2017: Physics Seminar Serises
공지   Seminar Room 1501  Fall 2017: Physics Colloquium
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23   E6-2. #1323(1st fl.)  Quantum information experiments using few electron spins in semiconductors
22   E6-2. #1323(1st fl.)  Quantum information experiments using few electron spins in semiconductors
21   E6-2. #1323(1st fl.)  Quantum information experiments using few electron spins in semiconductors
20   #1323(E6-2, 1st Fl.)  Tuning microwave cavities with biased nonlinear dielectrics for axion searches
19   E6-2, #1323  Emergent Collective Phenomena and Functions at Reduced Dimensions
18   E6-2, #1323  Samarium Hexaboride: Is it a Topological insulator?
17   E6-2. #1323(1st fl.)  “Tilt engineering of 4d and 5d transition metal oxides?”
16   E6-2. 5st fl. #1501  Spectroscopic studies of iron-based superconductors : what have we learned?
15   #2501(E6-2. 2nd fl.)  Lattice/Spin/Charge Coupling in 5d Pyrochlore Cd2Os2O7
14   1st fl. #1323(E6-2)  "Visualization of oxygen vacancy in motion and the interplay with electronic conduction"
13   E6-2. #1323(1st fl.)  “The quest for novel high-temperature superconductors---Prospects and progress in iridate
12   #1323(E6-2. 1st fl.)  Dirac fermions in condensed matters
11   #1323(E6-2. 1st fl.)  Dirac fermions in condensed matters
10   #1323(E6-2. 1st fl.)  Dirac fermions in condensed matters
9   E6-2, #1323  Mott Physics in the Strong Spin-Orbit Coupling Regime
»   E6-2. 1st fl. #1322  A new impurity solver for multi-orbital systems: adaptive truncation of the Hilbert space
7   E6-2, RM #1323  Superconducting Quantum Interference Devices for Precision Detection
6   1:30p.m. #1323(E6-2. 1st fl.)  “Possible symmetry in the phase diagrams of electron- & hole-doped cuprate high-Tc superconductors”
5   1:30p.m. #1323(E6-2. 1st fl.)  “Possible symmetry in the phase diagrams of electron- & hole-doped cuprate high-Tc superconductors”