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Effect of Arrangement of Input Gates on Logic Switching Characteristics of Nanodot Array Device
JO, Mingu,KATO, Yuki,ARITA, Masashi,ONO, Yukinori,FUJIWARA, Akira,INOKAWA, Hiroshi,TAKAHASHI, Yasuo,CHOI, Jung-Bum 'Institute of Electronics, Information and Communi 2012 IEICE transactions on electronics Vol.95 No.5
조수현,정원식,홍지숙,김범영,한가람,Leandersson M.,Balasubramanian T.,Arita Masashi,Shimada Kenya,심지훈,김창영,박승룡 한국물리학회 2021 Current Applied Physics Vol.30 No.-
Material family of zinc blende structure semiconductors (ZBSSs) is important for novel technique such as spintronics. A study of the ZBSS spin-splitting structure in momentum space is essential when seeking to understand the exotic properties of the material. The Dresselhaus field predominates in the bulk, but the Rashba field plays important roles in states near the surface. Here, we used circular dichroism in angle-resolved photoemission spectroscopy (CD-ARPES) to explore the spin-splitting structure of bulk ZBSS in momentum space. The observed structure was well-explained by a Dresselhaus field attributable to the lack of inversion symmetry in ZBSS crystals. We show that CD-ARPES usefully reveals spin-splitting in momentum space. CD-ARPES combined with hard x-ray incident-beam would be useful to investigate the spin-splitting structures of the interface states in the ZBSS heterostructure.
Spin and orbital angular momentum structure of Cu(111) and Au(111) surface states
Kim, Beomyoung,Kim, Choong H.,Kim, Panjin,Jung, Wonsig,Kim, Yeongkwan,Koh, Yoonyoung,Arita, Masashi,Shimada, Kenya,Namatame, Hirofumi,Taniguchi, Masaki,Yu, Jaejun,Kim, Changyoung American Physical Society 2012 Physical review. B, Condensed matter and materials Vol.85 No.19
Warping effects in the band and angular-momentum structures of the topological insulator Bi2Te3
Jung, Wonsig,Kim, Yeongkwan,Kim, Beomyoung,Koh, Yoonyoung,Kim, Chul,Matsunami, Masaharu,Kimura, Shin-ichi,Arita, Masashi,Shimada, Kenya,Han, Jung Hoon,Kim, Juyoung,Cho, Beongki,Kim, Changyoung American Physical Society 2011 Physical review. B, Condensed matter and materials Vol.84 No.24