• 제목/요약/키워드: condensed matter physics

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연구용 결정 성장 (Crystal Growth for the Research Purpose)

  • 허남정
    • 한국자기학회지
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    • 제21권3호
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    • pp.108-115
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    • 2011
  • 이 글에서는 응집물질물리 실험에 필수적인 소규모의 연구용 고순도 시료 제작에 있어 기본적인 사항들을 살펴본다. 연구자들이 쉽게 접근할 수 있는 시료 제작법들을 중심으로 제작 과정과 유의점등을 소개하려 한다. 가장 흔히 사용되는 고상소결법으로 부터 시작하여 다양한 환경에서 다결정 및 단결정 제작에 필수적인 석영관을 이용한 시료 제작에 대해 설명하고 단결정 제작의 기초와 다양한 단결정 성장법에 대해서도 전반적으로 소개하여 시료 제작을 처음 접하는 연구자들의 이해를 돕도록 한다.

Two-Dimensional Electron Gas (2DEG) at $Ta_2O_5/SrTiO_3$ Heterointerface

  • Joung, Jin Gwan;Yoo, Kwang Soo;Kim, Jin Sang;Baek, Seung-Hyub
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제44회 동계 정기학술대회 초록집
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    • pp.161-161
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    • 2013
  • Two-dimensional electron gas (2DEG) has been investigated at the heterointerface between two insulating dielectric perovskite oxides, $LaAlO_3$ (LAO)/$SrTiO_3$ (STO). Properties of the 2DEG have attracted an enormous interest in condensed matter physics due to multifunctional properties such as the coexistence of ferromagnetism and superconductivity, as well as the high electron mobility. Here, we have grown $Ta_2O_5$ thin films using pulsed laser deposition on $SrTiO_3$ substrate to investigate the electric properties of the $Ta_2O_5$/STO heterointerface. Our research reveal that the non-polar $Ta_2O_5$/$TiO_2$ heterointerface favors the formation of 2DEG similar to that at the LAO/STO heterointerface. The metallic behavior was found in this heterointerface with the current about $10{\sim}100{\mu}A$ at 5 V by using conventional I-V measurements, when the $Ta_20_5$ film thickness reaches over critical thickness, $d_c{\simeq}2uc$. The finding that electrons was localized at $Ta_2O_5$/STO heterointerface have attracted to be strong and new candidate for nanoscale oxide device applications.

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Bottleneck Behavior of $^1H$ NMR Spin-lattice Relaxation in Ammonium Sulfate

  • Hong, Kwan-Soo;Yu, In-Suk
    • 한국자기공명학회논문지
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    • 제6권2호
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    • pp.132-141
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    • 2002
  • $^1H$ nuclear magnetic resonance (NMR) relaxations have been investigated in ammonium sulfate $((NH_4)_2SO_4)$ power at temperatures ranging form 102 K to 440 K. There is a bottleneck in the spin-lattice relaxation between the nuclear spin system and the hindered rotation of ammonium ions, which is certified by measuring the relaxation according to the initial condition of the spin system. For temperatures below 318 K the $^1H$ spin-lattice relaxations have double-exponential behaviors with the exponent, n, having a value 2>n>1 initially and n=l after a long time. Above 318 K not only is the relaxation exponential initially with exponent n=1, but it is a single-exponential over the entire time, resulting in one $T_1$ value. The two types of $NH_4^+$ ions have different activation energies for hindered rotation, $E_a^1=0.27{\pm}0.02eV$ and $E_a^11=0.12{\pm}0.0eV$, in the ferroelectric phase.

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Synthesis of La0.7Sr0.3Mn1-xIrxO3 thin-films in search of superconductivity

  • Byeongjun Seok;Youngdo Kim;Donghan Kim;Jongho Park;Changyoung Kim
    • 한국초전도ㆍ저온공학회논문지
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    • 제25권2호
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    • pp.10-13
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    • 2023
  • 본 연구에서는 현재까지 연구된 HTSC와 다른 새로운 HTSC 물질군으로 제시된 LSMIO에 대한 합성 및 박막 성장과 물성 측정을 진행하였다. LSMIO는 기존의 HTSC 물질들과 비교하여 초전도처럼 보이는 현상의 기작이 상이한 것으로 예상되어 초전도 현상에 대한 이해의 폭을 넓히는데 도움이 될 것으로 기대되는 물질이다. 박막 성장을 위해 고상 합성법을 적용하여 La0.7Sr0.3Mn1-xIrxO3 세라믹 타겟을 합성하였으며, XRD 패턴 분석 결과 La0.7Sr0.3Mn0.88Ir0.12O3 샘플을 1200℃에서 2회 소결하는 것이 최적의 합성 조건임을 찾아내었다. 해당 조성의 LSMIO 세라믹 타겟을 사용하여 레이저 강도를 0.4 J/cm2에서 1.2 J/cm2까지 조절하며 PLD를 사용해 박막을 증착 하였다. 모든 LSMIO 박막은 동일한 단결정 LSAT 기판 위에 같은 두께로 성장하여 기판과 시료 두께에 의한 효과는 배제하였다. RHEED 패턴과 박막 XRD 측정 결과 성장된 박막들은 epitaxial하게 100 UC로 성장되었음을 확인할 수 있었으며, 각 박막들은 저항 측정 결과 모체 화합물인 LSMO와 비슷한 저항 특성을 보이며, 레이저 강도가 강할수록 Curie 온도가 낮아지는 결과가 나타났다. LSMIO와 LSMO가 유사한 전기적 특성을 가지는 것을 볼 때, Curie 온도의 하락은 박막의 Sr 치환 비율의 감소에 의한 것으로 사료된다. 본 연구에서는 HTSC의 후보군인 LSMO에 Ir을 치환하여 결정 및 전자 구조의 다양한 변화 시도하고 그 특성을 관찰하였다. LSMIO 페로브스카이트 시스템에서는 자기 양자불안정 (magnetic quantum instability) 상태 부근에서 강자성요동 (ferromagnetic fluctuation)에 의해 초전도가 발현될 수 있다고 보고되었지만, [5, 14] 본 연구에서 성장된 LSMIO 박막은 일반적인 강자성 특성을 보이며 초전도 현상은 관찰되지 않았다. 차후, 아직은 시작 단계인 LSMIO 소재에 관한 연구 저변을 확대하고 다양한 조성비의 박막을 성장하여 물리적 특성과 근원에 대한 연구가 필요할 것으로 사료된다. 비록 초전도는 발현되지 않았지만 manganite 페로브스카이트 시스템에서 전이금속 원소의 치환 및 세라믹 타겟 합성, 그리고 박막 성장과 특성 분석에 걸친 전과정에 대한 연구를 진행하였다. 이를 바탕으로 차후 다양한 HTSC 소재의 합성 및 박막화와 그 특성을 평가하는 연구에 대한 통찰을 제공하기를 기대한다.

In Situ Spectroscopy in Condensed Matter Physics

  • Noh, Tae Won
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2014년도 제46회 동계 정기학술대회 초록집
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    • pp.92-92
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    • 2014
  • Recently, many state-of-art spectroscopy techniques are used to unravel the mysteries of condensed matters. And numerous heterostructures have provided a new avenue to search for new emergent phenomena. Especially, near the interface, various forms of symmetry-breaking can appear, which induces many novel phenomena. Although these intriguing phenomena can be emerged at the interface, by using conventional measurement techniques, the experimental investigations have been limited due to the buried nature of interface. One of the ways to overcome this limitation is in situ investigation of the layer-by-layer evolution of the electronic structure with increasing of the thickness. Namely, with very thin layer, we can measure the electronic structure strongly affected by the interface effect, but with thick layer, the bulk property becomes strong. Angle-resolved photoemission spectroscopy (ARPES) is powerful tool to directly obtain electronic structure, and it is very surface sensitive. Thus, the layer-by-layer evolution of the electronic structure in oxide heterostructure can be investigated by using in situ ARPES. LaNiO3 (LNO) heterostructures have recently attracted much attention due to theoretical predictions for many intriguing quantum phenomena. The theories suggest that, by tuning external parameters such as misfit strain and dimensionality in LNO heterostructure, the latent orders, which is absent in bulk, including charge disproportionation, spin-density-wave order and Mott insulator, could be emerged in LNO heterostructure. Here, we performed in situ ARPES studies on LNO films with varying the misfit strain and thickness. (1) By using LaAlO3 (-1.3%), NdGaO3 (+0.3%), and SrTiO3 (+1.7%) substrates, we could obtain LNO films under compressive strain, nearly strain-free, and tensile strain, respectively. As strain state changes from compressive to tensile, the Ni eg bands are rearranged and cross the Fermi level, which induces a change of Fermi surface (FS) topology. Additionally, two different FS superstructures are observed depending on strain states, which are attributed to signatures of latent charge and spin orderings in LNO films. (2) We also deposited LNO ultrathin films under tensile strain with thickness between 1 and 10 unit-cells. We found that the Fermi surface nesting effect becomes strong in two-dimensions and significantly enhances spin-density-wave order. The further details are discussed more in presentation. This work was collaborated with Hyang Keun Yoo, Seung Ill Hyun, Eli Rotenberg, Ji Hoon Shim, Young Jun Chang and Hyeong-Do Kim.

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Beam line design and beam transport calculation for the μSR facility at RAON

  • Pak, Kihong;Park, Junesic;Jeong, Jae Young;Kim, Jae Chang;Kim, Kyungmin;Kim, Yong Hyun;Son, Jaebum;Lee, Ju Hahn;Lee, Wonjun;Kim, Yong Kyun
    • Nuclear Engineering and Technology
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    • 제53권10호
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    • pp.3344-3351
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    • 2021
  • The Rare Isotope Science Project was launched in 2011 in Korea toward constructing the Rare isotope Accelerator complex for ON line experiments (RAON). RAON will house several experimental systems, including the Muon Spin Rotation/Relaxation/Resonance (μSR) facility in High Energy Experimental Building B. This facility will use 600-MeV protons with a maximum current of 660 pμA and beam power of 400 kW. The key μSR features will facilitate projects related to condensed-matter and nuclear physics. Typical experiments require a few million surface muons fully spin-polarized opposite to their momentum for application to small samples. Here, we describe the design of a muon transport beam line for delivering the requisite muon numbers and the electromagnetic-component specifications in the μSR facility. We determine the beam-line configuration via beam-optics calculations and the transmission efficiency via single-particle tracking simulations. The electromagnet properties, including fringe field effects, are applied for each component in the calculations. The designed surface-muon beamline is 17.3 m long, consisting of 2 solenoids, 2 dipoles affording 70° deflection, 9 quadrupoles, and a Wien filter to eliminate contaminant positrons. The average incident-muon flux and spin rotation angle are estimated as 5.2 × 106 μ+/s and 45°, respectively.