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        A Historical Perspective on the Integration of Mind and Material presented in Dharmakāya and Adībuddha

        ( Seongjoon Cheong ) 경남대학교 인문과학연구소 2021 人文論叢 Vol.54 No.-

        This study is to examine the formation and development of Buddhist thought concerning mind and material oriented with Dharmakāya and Adībuddha. In the age of Gautama Buddha religion of India maintained the theory of Brahman, a creator of universe along with the materialism of elements asserted by Indian philosophers. Gautama Buddha denied the creator of heavenly god or materialism instead asserted Dependent Origination that any manifestation of mind and material resulted from elements and environment regardless of any predefined attributes or nature. The foundation of the Dependent Origination and the Four Elements of material were designated by Dharma. In the age of Mahāyāna Buddhism. the rule of Dependent Origination and emptiness were integrated into Dharmakāya as a personalization of Dharma. The idea of Two Truth in Mahāyāna Buddhism overcomed the danger of regarding Dharma or Dharma-kāya as independent or eternal nature by dividing all the phenomenon into properties of emptiness and that of distinction and discrimination. The idea of Dharmakāya developed to the three bodies of Buddha, which attributes are described in Ornament Sūtra and also in Kālacakra Tantra as Adībuddha, which prove the historical continuity of Mahāyāna Buddhism that were transmitted to Tibetan Buddhism survived today.

      • Probing Evolution of Twist-Angle-Dependent Interlayer Excitons in MoSe<sub>2</sub>/WSe<sub>2</sub> van der Waals Heterostructures

        Nayak, Pramoda K.,Horbatenko, Yevhen,Ahn, Seongjoon,Kim, Gwangwoo,Lee, Jae-Ung,Ma, Kyung Yeol,Jang, A-Rang,Lim, Hyunseob,Kim, Dogyeong,Ryu, Sunmin,Cheong, Hyeonsik,Park, Noejung,Shin, Hyeon Suk American Chemical Society 2017 ACS NANO Vol.11 No.4

        <P>Interlayer excitons were observed at the heterojunctions in van der Waals heterostructures (vdW HSs). However, it is not known how the excitonic phenomena are affected by the stacking order. Here, we report twist-angle-dependent interlayer excitons in MoSe2/WSe2 vdW HSs based on photoluminescence (PL) and vdW-corrected density functional theory calculations. The PL intensity of the interlayer excitons depends primarily on the twist angle: It is enhanced at coherently stacked angles of 0 degrees and 60 degrees (owing to strong interlayer coupling) but disappears at incoherent intermediate angles. The calculations confirm twist-angle-dependent interlayer coupling: The states at the edges of the valence band exhibit a long tail that stretches over the other layer for coherently stacked angles; however, the states are largely confined in the respective layers for intermediate angles. This interlayer hybridization of the band edge states also correlates with the interlayer separation between MoSe2 and WSe2 layers. Furthermore, the interlayer coupling becomes insignificant, irrespective of twist angles, by the incorporation of a hexagonal boron nitride monolayer between MoSe2 and WSe2.</P>

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