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    Nerve communication model by bio-cells and optical dipole coupling effects
    (2013-12-01)
    Zainol, Farrah Dilla
    ;
    Thammawongsa, Nopparat
    ;
    Mitatha, Somsak
    ;
    Ali, Jalil
    ;
    Yupapin, Preecha
    A novel design of nerve communications and networks using the coupling effects between bio-cells and optical dipoles is proposed. The electrical signals are coupled to the dipoles and cells which propagate within the optical networks for long distance without any electromagnetic interference. Results have shown that the use of optical spins in the spin networks, referred as Spinnet, can be formed. This technique can be used to improve the nerve communication performance. It is fabricated as a nano-biotic circuit system, and has great potential for future disability applications and diagnosis of the links of nerves across the dead cells. © 2013 Informa Healthcare USA, Inc.
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    Hybrid transistor manipulation controlled by light within a PANDA microring resonator
    (2012-06-12)
    Chantanetra, Soontorn
    ;
    Teeka, Chat
    ;
    Mitatha, Somsak
    ;
    Jomtarak, Rangsan
    ;
    Yupapin, Preecha P.
    In this paper, the novel type of transistor known as a hybrid transistor is proposed, in which all types of transistors can be formed by using a microring resonator called a PANDA microring resonator. In principle, such a transistor can be used to form for various transistor types by using the atom/molecule trapping tools, which is named by an optical tweezer, where in application all type of transistors, especially, molecule and photon transistors can be performed by using the trapping tools, which will be described in details. © 2012 IEEE.