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Dive into the research topics where Jungmin Park is active.

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Featured researches published by Jungmin Park.


ACS Nano | 2016

Gate-Tunable Spin Exchange Interactions and Inversion of Magnetoresistance in Single Ferromagnetic ZnO Nanowires

Vijayakumar Modepalli; Mi-Jin Jin; Jungmin Park; Junhyeon Jo; Ji Hyun Kim; Jeong Min Baik; Changwon Seo; Jeongyong Kim; Jung-Woo Yoo

Electrical control of ferromagnetism in semiconductor nanostructures offers the promise of nonvolatile functionality in future semiconductor spintronics. Here, we demonstrate a dramatic gate-induced change of ferromagnetism in ZnO nanowire (NW) field-effect transistors (FETs). Ferromagnetism in our ZnO NWs arose from oxygen vacancies, which constitute deep levels hosting unpaired electron spins. The magnetic transition temperature of the studied ZnO NWs was estimated to be well above room temperature. The in situ UV confocal photoluminescence (PL) study confirmed oxygen vacancy mediated ferromagnetism in the studied ZnO NW FET devices. Both the estimated carrier concentration and temperature-dependent conductivity reveal the studied ZnO NWs are at the crossover of the metal-insulator transition. In particular, gate-induced modulation of the carrier concentration in the ZnO NW FET significantly alters carrier-mediated exchange interactions, which causes even inversion of magnetoresistance (MR) from negative to positive values. Upon sweeping the gate bias from -40 to +50 V, the MRs estimated at 2 K and 2 T were changed from -11.3% to +4.1%. Detailed analysis on the gate-dependent MR behavior clearly showed enhanced spin splitting energy with increasing carrier concentration. Gate-voltage-dependent PL spectra of an individual NW device confirmed the localization of oxygen vacancy-induced spins, indicating that gate-tunable indirect exchange coupling between localized magnetic moments played an important role in the remarkable change of the MR.


ACS Applied Materials & Interfaces | 2018

Solution-Processed Ferrimagnetic Insulator Thin Film for the Microelectronic Spin Seebeck Energy Conversion

Inseon Oh; Jungmin Park; Junhyeon Jo; Mi-Jin Jin; Min-Sun Jang; Ki-Suk Lee; Jung-Woo Yoo

The longitudinal spin Seebeck effects with a ferro- or ferrimagnetic insulator provide a new architecture of a thermoelectric device that could significantly improve the energy conversion efficiency. Until now, epitaxial yttrium iron garnet (YIG) films grown on gadolinium gallium garnet (GGG) substrates by a pulsed laser deposition have been most widely used for spin thermoelectric energy conversion studies. In this work, we developed a simple route to obtain a highly uniform solution-processed YIG film and used it for the on-chip microelectronic spin Seebeck characterization. We improved the film roughness down to ∼0.2 nm because the extraction of thermally induced spin voltage relies on the interfacial quality. The on-chip microelectronic device has a dimension of 200 μm long and 20 μm wide. The solution-processed 20 nm thick YIG film with a 10 nm Pt film was used for the spin Seebeck energy converter. For a temperature difference of Δ T ≈ 0.036 K applied on the thin YIG film, the obtained Δ V ≈ 28 μV, which is equivalent to SLSSE ≈ 80.4 nV/K, is close to the typical reported values for thick epitaxial YIG films. The temperature and magnetic field-dependent behaviors of spin Seebeck effects in our YIG films suggest active magnon excitations through the noncoherent precession channel. The effective SSE generation with the solution-processed thin YIG film provides versatile applications of the spin thermoelectric energy conversion.


Nano Letters | 2017

Nonlocal Spin Diffusion Driven by Giant Spin Hall Effect at Oxide Heterointerfaces

Mi Jin Jin; Seon Young Moon; Jungmin Park; Vijayakumar Modepalli; Junhyeon Jo; Shin Ik Kim; Hyun Cheol Koo; Byoung-Chul Min; Hyun-Woo Lee; Seung Hyub Baek; Jung Woo Yoo


Organic Electronics | 2017

Highly stretchable organic thermoelectrics with an enhanced power factor due to extended localization length

Junhyeon Jo; Inseon Oh; Mi-Jin Jin; Jungmin Park; Jae Sung Son; Ki-Seok An; Jung-Woo Yoo


Current Applied Physics | 2016

Local crystallization and enhanced thermoelectric performance of glassy carbon induced by the electron beam irradiation

Inseon Oh; Junhyeon Jo; Jungmin Park; Jongmin Lee; Heungjoo Shin; Jung-Woo Yoo


Synthetic Metals | 2014

Organic-based magnetic semiconductor thin film of Fe(TCNQ)x∼2 developed by physical vapor deposition and local spin density induced core-level shifts

Junhyeon Jo; Mi-Jin Jin; Jungmin Park; Vijayakumar Modepalli; Chi-Yueh Kao; Arthur J. Epstein; Min Choi; Noejung Park; Seung-Yeop Lee; Cheolho Jeon; Jung-Woo Yoo


Applied Surface Science | 2019

Probing surface electronic properties of a patterned conductive STO by reactive ion etching

Mi-Jin Jin; Daeseong Choe; Seung Youb Lee; Jungmin Park; Junhyeon Jo; Inseon Oh; Shin-Ik Kim; Seung-Hyub Baek; Cheolho Jeon; Jung-Woo Yoo


Bulletin of the American Physical Society | 2018

Emerging exchange bias and magnetic coupled layer at molecular interface

Junhyeon Jo; Inseon Oh; Mi-Jin Jin; Jungmin Park; Jung-Woo Yoo


Bulletin of the American Physical Society | 2017

Spin Hall Effect Driven Non-Local Spin Diffusion at Oxide Heterointerfaces.

Mi-Jin Jin; Seon Young Moon; Jungmin Park; Vijayakumar Modepalli; Junhyeon Jo; Shin-Ik Kim; Hyun Koo; Byoung-Chul Min; Hyun-Woo Lee; Seung-Hyub Baek; Jung-Woo Yoo


Bulletin of the American Physical Society | 2016

Gate tunable spin exchange interaction and inversion of magnetoresistance in ferromagnetic ZnO nanowire

Vijayakumar Modepalli; Mi-Jin Jin; Jungmin Park; Junhyeon Jo; Ji Hyun Kim; Jeong Min Baik; Jeongyong Kim; Jung-Woo Yoo

Collaboration


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Junhyeon Jo

Ulsan National Institute of Science and Technology

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Jung-Woo Yoo

Ulsan National Institute of Science and Technology

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Mi-Jin Jin

Ulsan National Institute of Science and Technology

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Vijayakumar Modepalli

Ulsan National Institute of Science and Technology

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Inseon Oh

Ulsan National Institute of Science and Technology

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Seon Young Moon

Korea Institute of Science and Technology

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Seung-Hyub Baek

Korea Institute of Science and Technology

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Byoung-Chul Min

Korea Institute of Science and Technology

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Hyun-Woo Lee

Pohang University of Science and Technology

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Jeong Min Baik

Ulsan National Institute of Science and Technology

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