박정우 교수
Jeong-Woo Park
서울대학교 · 지구·행성과학
연구실 소개
박정우 교수의 연구실은 광물학과 지구화학 분야에서 활동하며, 특히 구리·금 등 유용광물의 기원과 고갈된 마그마의 형성 기작을 규명하는 데 초점을 맞추고 있습니다. 고도로 정밀한 원소 분석 기법을 활용해 화산암류의 화학적 이행과 니켈-팔라디움 화합물의 분포를 연구하며, 특히 백금족원소(PGE)와 콜로필성 원소의 행동을 통해 광물화성 마그마의 기원을 규명하고자 합니다. 이와 더불어, 신경망 기반의 하드웨어 설계와도 연계하여 에너지 효율적인 학습 시스템 개발에도 기여하고 있습니다.
연구 현황
연구 성과 추이
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주요 논문
15Magmas enriched in Cu and Au are likely to be the most prospective for magmatic–hydrothermal deposits of these metals. However, the mechanism that leads to the formation of metal-rich magmas is not well constrained. We report major, trace and platinum group element (PGE) data for the Niuatahi–Motutahi lavas, Tonga rear arc, with the aim of studying their petrogenesis with special emphasis on the evolution of chalcophile elements during magmatic differentiation. Major and trace element contents,
Advances in neural network and machine learning algorithms have sparked a wide array of research in specialized hardware, ranging from high-performance convolutional neural network (CNN) accelerators to energy-efficient deep-neural network (DNN) edge computing systems [1]. While most studies have focused on designing inference engines, recent works have shown that on-chip training could serve practical purposes such as compensating for process variations of in-memory computing [2] or adapting to
Platinum group element (PGE) abundances in the upper continental crust (UCC) are poorly constrained with published values varying by up to an order of magnitude. We evaluated the validity of using loess to estimate PGE abundances in the UCC by measuring these elements in seven Chinese loess samples using a precise method that combines NiS fire assay with isotope dilution. Major and trace elements of the Chinese loess show a typical upper crustal composition and PGE abundances are consistent with
Chalcophile element fertility, the chalcophile metal abundance in the source magma, is likely to be a critical factor for the formation of porphyry Cu ± Au deposits. In this study, we provide evidence to support this hypothesis by comparing the platinum group element (PGE) geochemistry of barren and ore-bearing Cu ± Au granitic suites. We report the PGE contents of three barren volcanic and subvolcanic suites from Argentina and Japan and two Cu ± Au bearing suites from Indonesia and Chile. These
Recent advances in neural network (NN) and machine learning algorithms have sparked a wide array of research in specialized hardware, ranging from high-performance NN accelerators for use inside the server systems to energy-efficient edge computing systems. While most of these studies have focused on designing inference engines, implementing the training process of an NN for energy-constrained mobile devices has remained to be a challenge due to the requirement of higher numerical precision. In
Recent works on mobile deep-learning processors have presented designs that exploit sparsity [2, 3], which is commonly found in various neural networks. However, due to the shift in the machine learning community towards using non-sparse activation functions such as Leaky ReLU or Swish for better training convergence, state-of-theart models no longer exhibit the sparsity found in conventional ReLU-based models (Fig. 9.3.1, top). Moreover, contrary to error-tolerant image classification tasks, mo
Indium oxide (In2O3) thin films were deposited via thermal atomic layer deposition (ALD) to exploit their potential as semiconductors in thin-film transistors (TFTs), using a new liquid type indium complex precursor (In(CH3)3[CH3OCH2CH2NHtBu]). In2O3 films were deposited successfully at lower temperatures and exhibited a satisfactory growth rate (∼0.35 Å per cycle). In addition, we investigated the effect of deposition temperature from 100 to 250 °C on the microstructure and chemical and physica
Recent experimental studies and in situ LA-ICP-MS analysis on natural Cr-spinel have shown that Rh and IPGEs (Ir-group platinum group elements: Ru, Ir, Os) are enriched in the lattice of Cr-spinel. However, the factors controlling the partitioning behaviour of these elements are not well constrained. In this study, we report the Rh, IPGE, and trace element contents in primitive Cr-spinel, measured by LA-ICP-MS, from nine volcanic suites covering various tectonic settings including island arc pic
SnO <sub>x</sub> thin films were successfully deposited by the thermal atomic layer deposition (ALD) method using N, N'- tert-butyl-1,1-dimethylethylenediamine stannylene(II) as a precursor and ozone and water as reactants. The growth of SnO and SnO<sub>2</sub> films could be easily controlled by employing different reactants and utilizing different ozone and water concentrations, respectively. The formation of both SnO and SnO<sub>2</sub> films exhibited typical surface-limiting reaction charac
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