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Dive into the research topics where Seung-Sup Lee is active.

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Featured researches published by Seung-Sup Lee.


Physical Review Letters | 2014

Anisotropic charge Kondo effect in a triple quantum dot.

Gwangsoo Yoo; Jinhong Park; Seung-Sup Lee; Heung-Sun Sim

We predict that an anisotropic charge Kondo effect appears in a triple quantum dot, when the system has twofold degenerate ground states of (1,1,0) and (0,0,1) charge configurations. Using bosonization and refermionization methods, we find that at low temperature the system has the two different phases of massive charge fluctuations between the two charge configurations and vanishing fluctuations, which are equivalent with the Kondo-screened and ferromagnetic phases of the anisotropic Kondo model, respectively. The phase transition is identifiable by electron conductance measurement, offering the possibility of experimentally exploring the anisotropic Kondo model. Our charge Kondo effect has a similar origin to that in a negative-U Anderson impurity.


Physical Review Letters | 2013

How to directly measure a Kondo cloud's length.

Jinhong Park; Seung-Sup Lee; Yuval Oreg; Heung-Sun Sim

We propose a method to directly measure, by electrical means, the Kondo screening cloud formed by an Anderson impurity coupled to semi-infinite quantum wires, on which an electrostatic gate voltage is applied at distance L from the impurity. We show that the Kondo cloud, and hence the Kondo temperature and the electron conductance through the impurity, are affected by the gate voltage, as L decreases below the Kondo cloud length. Based on this behavior, the cloud length can be experimentally identified by changing L with a keyboard type of gate voltage or tuning the coupling strength between the impurity and the wires.


Physical Review Letters | 2017

Doublon-Holon Origin of the Subpeaks at the Hubbard Band Edges

Seung-Sup Lee; Jan von Delft; Andreas Weichselbaum

Dynamical mean-field theory (DMFT) studies frequently observe a fine structure in the local spectral function of the SU(2) Fermi-Hubbard model at half filling: In the metallic phase close to the Mott transition, subpeaks emerge at the inner edges of the Hubbard bands. Here we demonstrate that these subpeaks originate from the low-energy effective interaction of doublon-holon pairs, by investigating how the correlation functions of doublon and holon operators contribute to the subpeaks. A mean-field analysis of the low-energy effective Hamiltonian provides results consistent with our DMFT calculation using the numerical renormalization group as an impurity solver. In the SU(3) and SU(4) Hubbard models, the subpeaks become more pronounced due to the increased degeneracy of doublon-holon pair excitations.


Physical Review A | 2012

Minimax optimization of entanglement witness operator for the quantification of three-qubit mixed-state entanglement

Sungguen Ryu; Seung-Sup Lee; Heung-Sun Sim

We develop a numerical approach for quantifying entanglement in mixed quantum states by convex-roof entanglement measures, based on the optimal entanglement witness operator and the minimax optimization method. Our approach is applicable to general entanglement measures and states and is an efficient alternative to the conventional approach based on the optimal pure-state decomposition. Compared with the conventional one, it has two important merits: (i) that the global optimality of the solution is quantitatively verifiable, and (ii) that the optimization is considerably simplified by exploiting the common symmetry of the target state and measure. To demonstrate the merits, we quantify Greenberger-Horne-Zeilinger (GHZ) entanglement in a class of three-qubit full-rank mixed states composed of the GHZ state, the


Optics Express | 2012

Photo-configurable embossed liquid crystal alignment layer with high azimuthal anchoring strength.

Dowon Ahn; Yc Jeong; Manhee Han; Kuk Young Cho; Seung-Sup Lee; Jung-Ki Park

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Archive | 2007

Micro neddle roller assembly

Chang-Hyun Kim; Dong-Hun Hyun; Seung-Sup Lee; Manhee Han

state, and the white noise, the simplest mixtures of states with different genuine multipartite entanglement, which have not been quantified before this work. We discuss some general properties of the form of the optimal witness operator and of the convex structure of mixed states, which are related to the symmetry and the rank of states.


Archive | 2007

Micro needle roller assembly

Chang-Hyun Kim; Dong-Hun Hyun; Seung-Sup Lee; Manhee Han

Herein we describe a photo-alignment layer of improved azimuthal anchoring energy comparable to conventional rubbing method. In order to address the inherent low anchoring stability of photo-alignment layer, we applied embossing technique to conventional photosensitive polymer film, based on the cinnamoyl photoreactive groups, to introduce physical micro-groove effect for additional anchoring energy. From this, 2.5 × 10⁻⁴ J/m² of azimuthal anchoring energy was achieved, which is considered as synergistic effect from both photoinduced chemical interaction and physical microgroove alignment. In this study, we conducted systematic study on change in anchoring energy as a function of both aspect ratio of embossed pattern and UV exposure dose. We also demonstrated fabrication of sophisticated multi-domain structure of LC cells and discussed theoretical interpretation through LC simulation.


Archive | 2007

Transdermal delivery apparatus

Chang-Hyun Kim; Dong-Hun Hyun; Seung-Sup Lee; Manhee Han


Physical Review Letters | 2018

Detecting Kondo Entanglement by Electron Conductance

Gwangsu Yoo; Seung-Sup Lee; Heung-Sun Sim


Physical Review B | 2018

Filling-driven Mott transition in SU(N) Hubbard models

Seung-Sup Lee; Jan von Delft; Andreas Weichselbaum

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Shi-Joon Sung

Daegu Gyeongbuk Institute of Science and Technology

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