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008 101117s2010 enka b 001 0 eng
010 _a 2010283854
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_2bnb
016 7 _a015433078
_2Uk
020 _a9780521763752 (hbk.)
035 _a(OCoLC)ocn460059731
040 _aUKM
_dBTCTA
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_dSGB
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_dDLC
042 _alccopycat
050 0 0 _aTA1530
_b.G37 2010
082 0 4 _a621.36
_222
100 1 _aGaponenko, S. V.
_q(Sergey V.),
_d1958-
245 1 0 _aIntroduction to nanophotonics /
_cSergey V. Gaponenko.
260 _aCambridge ;
_aNew York :
_bCambridge University Press,
_c2010.
300 _axviii, 465 p. :
_bill. ;
_c26 cm.
504 _aIncludes bibliographical references and indexes.
505 0 _aElectrons and electromagnetic waves in nanostructures. Basic properties of electromagnetic waves and quantum particles -- Wave optics versus wave mechanics I -- electrons in periodic structures and quantum confinement effects -- Semiconductor nanocrystals (quantum dots) -- Nanoplasmonics I: metal nanoparticles -- Light in periodic structures: photonic crystals -- Light in non-periodic structures -- Photonic circuitry -- Tunneling of light -- Nanoplasmonics II: metal-dielectric nanostructures -- Wave optics versus wave mechanics II -- Light-matter interaction in nanostructures. LIght-matter interaction: introductory quantum electrodynamics -- Density of states effects on optical proecesses in mesoscopic structures -- Light-matter states beyond perturbational approach -- Plasmonic enhancement of secondary radiation.
520 _aNanophotonics is where photonics merges with nanoscience and nanotechnology, and where spatial confinement considerably modifies light propagation and light-matter interaction. The textbook highlights practical issues, material properties and device feasibility, and includes the basic optical properties of metals, semiconductors and dielectrics. Mathematics is kept to a minimum and theoretical issues are reduced to a conceptual level. --from publisher description
650 0 _aNanophotonics.
906 _a7
_bcbc
_ccopycat
_d3
_encip
_f20
_gy-gencatlg
942 _2udc
_cBK
999 _c26384
_d26384