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Active plasmonic devices [electronic resource] : based on magnetoplasmonic nanostructures

Active plasmonic devices [electronic resource] : based on magnetoplasmonic nanostructures

자료유형
E-Book(소장)
개인저자
Martín Becerra, Diana.
서명 / 저자사항
Active plasmonic devices [electronic resource] : based on magnetoplasmonic nanostructures / Diana Martín Becerra.
발행사항
Cham :   Springer,   c2017.  
형태사항
1 online resource (xxiii, 113 p.) : ill. (some col.).
총서사항
Springer Theses,2190-5053, 2190-5061 (electronic)
ISBN
9783319484105 9783319484112 (e-book)
요약
This thesis investigates the effect of the magnetic field on propagating surface plasmon polaritons (SPPs), or surface plasmons for short. Above all, it focuses on using the magnetic field as an external agent to modify the properties of the SPPs, and therefore achieving active devices. Surface plasmons are evanescent waves that arise at metal–dielectric interfaces. They can be strongly confined (beyond the light diffraction limit), and provide a strong enhancement of the electromagnetic field at the interface. These waves have led to the development of plasmonic circuitry, which is a key candidate as an alternative to electronic circuitry and traditional optical telecommunication devices, since it is faster than the former and less bulky than the latter. Adopting both a theoretical and an experimental point of view, the book analyzes the magnetic modulation in SPPs by means of an interferometer engraved in a multilayer combining Au and Co. In this interferometer, which acts like a modulator, the SPP magnetic modulation is studied in detail, as are the parameters that have a relevant impact on it, simple ways to enhance it, its spectral dependence, and the highly promising possibility of using this system for biosensing. The thesis ultimately arrives at the conclusion that this method can provide values of modulations similar to other active methods used in plasmonics. .
일반주기
Title from e-Book title page.  
내용주기
Motivation and Objectives -- Active Plasmonics and Magnetoplasmonics -- Magnetoplasmonic Interferometry -- Magnetic Modulation of SPP in Au/Co/Au Trilayers -- Sensing Capability of the Interferometers -- Near Field Magnetoplasmonic Interferometry -- General Conclusions.
서지주기
Includes bibliographical references.
이용가능한 다른형태자료
Issued also as a book.  
일반주제명
Nanotechnology. Surfaces (Physics).
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020 ▼a 9783319484105
020 ▼a 9783319484112 (e-book)
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100 1 ▼a Martín Becerra, Diana.
245 1 0 ▼a Active plasmonic devices ▼h [electronic resource] : ▼b based on magnetoplasmonic nanostructures / ▼c Diana Martín Becerra.
260 ▼a Cham : ▼b Springer, ▼c c2017.
300 ▼a 1 online resource (xxiii, 113 p.) : ▼b ill. (some col.).
490 1 ▼a Springer Theses, ▼x 2190-5053, ▼x 2190-5061 (electronic)
500 ▼a Title from e-Book title page.
504 ▼a Includes bibliographical references.
505 0 ▼a Motivation and Objectives -- Active Plasmonics and Magnetoplasmonics -- Magnetoplasmonic Interferometry -- Magnetic Modulation of SPP in Au/Co/Au Trilayers -- Sensing Capability of the Interferometers -- Near Field Magnetoplasmonic Interferometry -- General Conclusions.
520 ▼a This thesis investigates the effect of the magnetic field on propagating surface plasmon polaritons (SPPs), or surface plasmons for short. Above all, it focuses on using the magnetic field as an external agent to modify the properties of the SPPs, and therefore achieving active devices. Surface plasmons are evanescent waves that arise at metal–dielectric interfaces. They can be strongly confined (beyond the light diffraction limit), and provide a strong enhancement of the electromagnetic field at the interface. These waves have led to the development of plasmonic circuitry, which is a key candidate as an alternative to electronic circuitry and traditional optical telecommunication devices, since it is faster than the former and less bulky than the latter. Adopting both a theoretical and an experimental point of view, the book analyzes the magnetic modulation in SPPs by means of an interferometer engraved in a multilayer combining Au and Co. In this interferometer, which acts like a modulator, the SPP magnetic modulation is studied in detail, as are the parameters that have a relevant impact on it, simple ways to enhance it, its spectral dependence, and the highly promising possibility of using this system for biosensing. The thesis ultimately arrives at the conclusion that this method can provide values of modulations similar to other active methods used in plasmonics. .
530 ▼a Issued also as a book.
538 ▼a Mode of access: World Wide Web.
650 0 ▼a Nanotechnology.
650 0 ▼a Surfaces (Physics).
830 0 ▼a Springer Theses.
856 4 0 ▼u https://oca.korea.ac.kr/link.n2s?url=https://doi.org/10.1007/978-3-319-48411-2
945 ▼a KLPA
991 ▼a E-Book(소장)

소장정보

No. 소장처 청구기호 등록번호 도서상태 반납예정일 예약 서비스
No. 1 소장처 중앙도서관/e-Book 컬렉션/ 청구기호 CR 530.44 등록번호 E14019131 도서상태 대출불가(열람가능) 반납예정일 예약 서비스 M

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