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      SCOPUS SCIE

      Feasibility study of micro-undulator for T-ray sources by using FEM

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      https://www.riss.kr/link?id=A107533089

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      <P>Possibility of development of micro-undulator utilizing perpendicular magnetic recording was explored by 2-D FEM simulation. In the simulation FePt and CoCr layer were compared as an appropriate recording layer of the undulator. Also variation of maximum field and THD with aspect ratio and gap height were simulated so that they should be optimized in a given thickness of recording layer. From both the simulation results and Bitter patterns recorded on FePt/Fe micro-undulator, the possibility of development of micro-undulator by utilizing perpendicular recording technique could be confirmed. (© 2008 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim)</P>
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      <P>Possibility of development of micro-undulator utilizing perpendicular magnetic recording was explored by 2-D FEM simulation. In the simulation FePt and CoCr layer were compared as an appropriate recording layer of the undulator. Also variatio...

      <P>Possibility of development of micro-undulator utilizing perpendicular magnetic recording was explored by 2-D FEM simulation. In the simulation FePt and CoCr layer were compared as an appropriate recording layer of the undulator. Also variation of maximum field and THD with aspect ratio and gap height were simulated so that they should be optimized in a given thickness of recording layer. From both the simulation results and Bitter patterns recorded on FePt/Fe micro-undulator, the possibility of development of micro-undulator by utilizing perpendicular recording technique could be confirmed. (© 2008 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim)</P>

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