빔라인부에서 University of Saskatchewan 의 Dr. Gapsoo Chang을 모시고 세미나가 있습니다.
관련링크
본문
style=MARGIN: 0cm 0cm 0pt; LINE-HEIGHT: normal; TEXT-ALIGN: center 
align=left>style=FONT-SIZE: 14pt; FONT-FAMILY: Times New Roman; mso-bidi-font-size: 10.0pt>빔라인부에서 University of Saskatchewan 의 Dr. Gapsoo Chang을 모시고  아래와 같이 세미나를 
갖고자 합니다.
관심있는 분들의 많은  참석 부탁드립니다.
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align=left>style=FONT-SIZE: 14pt; FONT-FAMILY: Times New Roman; mso-bidi-font-size: 10.0pt>1.제목: 
style=FONT-SIZE: 14pt; FONT-FAMILY: Times New Roman; mso-bidi-font-size: 10.0pt>Probing 
the defect effect on the magnetism in diluted magnetic semiconductors with soft 
x-ray fluorescence style=mso-bookmark: OLE_LINK2>
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장소 : 가속기연구소 저장링동 217호
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align=left>style=FONT-SIZE: 14pt; FONT-FAMILY: Times New Roman; mso-bidi-font-size: 10.0pt>style=FONT-SIZE: 14pt; FONT-FAMILY: Times New Roman; mso-bidi-font-size: 10.0pt>3.일시 
: 2007.05.17 (목) 15:00
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align=left>style=FONT-SIZE: 14pt; FONT-FAMILY: Times New Roman; mso-bidi-font-size: 10.0pt>4.연락처: 
김봉수 279-1535
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style=MARGIN: 0cm 0cm 0pt; LINE-HEIGHT: normal; TEXT-ALIGN: center 
align=center>style=FONT-SIZE: 14pt; FONT-FAMILY: Times New Roman; mso-bidi-font-size: 10.0pt>-
style=MARGIN: 0cm 0cm 0pt; LINE-HEIGHT: normal; TEXT-ALIGN: center 
align=center>style=FONT-SIZE: 14pt; FONT-FAMILY: Times New Roman; mso-bidi-font-size: 10.0pt>Probing 
the defect effect on the magnetism in diluted magnetic semiconductors with soft 
x-ray fluorescence style=mso-bookmark: OLE_LINK2>
style=MARGIN: 0cm 0cm 0pt; LINE-HEIGHT: normal; TEXT-ALIGN: center 
align=center>style=mso-bookmark: OLE_LINK2>style=FONT-SIZE: 14pt; COLOR: windowtext; FONT-FAMILY: Times New Roman; mso-bidi-font-size: 12.0pt; mso-fareast-font-family: 돋움; mso-fareast-language: KO>
style=MARGIN: 0cm 0cm 0pt; LINE-HEIGHT: 200%; TEXT-ALIGN: center 
align=center>style=mso-bookmark: OLE_LINK2>lang=DE 
style=FONT-SIZE: 12pt; LINE-HEIGHT: 200%; FONT-FAMILY: Times New Roman; mso-fareast-font-family: 한컴돋움; mso-ansi-language: DE>Gapstyle=FONT-SIZE: 12pt; LINE-HEIGHT: 200%; FONT-FAMILY: Times New Roman; mso-fareast-font-family: 한컴돋움; mso-fareast-language: KO; mso-ansi-language: DE> 
Soo Chang
style=MARGIN: 0cm 0cm 0pt; LINE-HEIGHT: normal; TEXT-ALIGN: center 
align=center>style=FONT-SIZE: 12pt; FONT-FAMILY: Times New Roman; mso-fareast-font-family: 한컴돋움>Department 
of style=FONT-SIZE: 12pt; FONT-FAMILY: Times New Roman; mso-fareast-font-family: 한컴돋움; mso-fareast-language: KO>Physics 
and Engineering Physicsstyle=FONT-SIZE: 12pt; FONT-FAMILY: Times New Roman; mso-fareast-font-family: 한컴돋움>, 
University of Saskatchewanstyle=FONT-SIZE: 12pt; FONT-FAMILY: Times New Roman; mso-fareast-font-family: 한컴돋움; mso-fareast-language: KO>, 
Saskatoon, SK S7N 5E2
style=MARGIN: 0cm 0cm 0pt; LINE-HEIGHT: 30pt; mso-line-height-rule: exactly>lang=EN-US style=FONT-SIZE: 12pt>
face=Times New Roman>
style=TEXT-JUSTIFY: inter-ideograph; MARGIN: 0cm 0cm 0pt; TEXT-INDENT: 36pt; LINE-HEIGHT: 150%; TEXT-ALIGN: justify; mso-layout-grid-align: none>face=Times New Roman>style=FONT-SIZE: 12pt; LINE-HEIGHT: 150%>Spin-electronics (or spintronics) 
utilizing both spin-dependent and charge-dependent electric currents has been 
intensively exploited as a promising alternative to the semiconductor technology 
relying only on the binary states of electric current (bit of 1 or 0). In order 
to realize practical spintronic devices, the style=FONT-SIZE: 12pt; LINE-HEIGHT: 150%; mso-fareast-font-family: 고딕,한컴돋움>primary 
requirement is to develop style=FONT-SIZE: 12pt; LINE-HEIGHT: 150%; mso-ansi-language: EN-CA>new 
ferromagnetic semiconductors which allow a current of spin-polarized electrons 
to be generated and controlled, and preserve the spin-coherence over long time 
and distance in an existing semiconductor structure.style=FONT-SIZE: 12pt; LINE-HEIGHT: 150%; mso-fareast-font-family: 바탕> 
style=FONT-SIZE: 12pt; LINE-HEIGHT: 150%>Therefore 
making semiconductors ferromagnetic has been a long-standing goal in the area of 
semiconductor-based spintronics. style=FONT-SIZE: 12pt; LINE-HEIGHT: 150%; mso-fareast-font-family: 돋움>One of 
widely used approaches is to dope magnetic elements such as Mn, Co, and Fe into 
conventional semiconductors. However, despite enormous research efforts devoted 
to incorporate diluted magnetic semiconductors (DMSs), a lack of consistency in 
experimental results has brought debates about the origin of ferromagnetism in 
DMSs and the demand of knowledge in local environment around magnetic impurities 
has increased. In this research,style=FONT-SIZE: 12pt; LINE-HEIGHT: 150%; mso-fareast-font-family: Times New Roman> 
style=FONT-SIZE: 12pt; LINE-HEIGHT: 150%; mso-fareast-font-family: 돋움>we have 
employed synchrotron-based xstyle=FONT-SIZE: 12pt; LINE-HEIGHT: 150%; mso-fareast-font-family: Times New Roman>-ray 
style=FONT-SIZE: 12pt; LINE-HEIGHT: 150%; mso-fareast-font-family: 돋움>absorption/emission 
spectroscopy to extensively investigate the local style=FONT-SIZE: 12pt; LINE-HEIGHT: 150%; mso-fareast-font-family: Times New Roman>electronic 
structure of style=FONT-SIZE: 12pt; LINE-HEIGHT: 150%; mso-fareast-font-family: 돋움>magnetic 
dopants and to shed light on the origin of ferromagnetism in the DMS materials. 
style=FONT-SIZE: 12pt; LINE-HEIGHT: 150%; mso-fareast-font-family: 고딕,한컴돋움>Recent 
experimental results of various magnetic semiconductors will be presented 
together with detailed discussion and analysis. 
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