Raman Scattering in Materials ScienceWilles H. Weber, Roberto Merlin Raman scattering is now being applied with increasing success to a wide range of practical problems at the cutting edge of materials science. The purpose of this book is to make Raman spectroscopy understandable to the non-specialist and thus to bring it into the mainstream of routine materials characterization. The book is pedagogical in approach and focuses on technologically important condensed-matter systems in which the specific use of Raman spectroscopy yields new and useful information. Included are chapters on instrumentation, bulk semiconductors and alloys, heterostructures, high-Tc superconductors, catalysts, carbon-based materials, wide-gap and super-hard materials, and polymers. |
Contents
I | 1 |
II | 3 |
IV | 4 |
V | 5 |
VI | 6 |
VII | 9 |
VIII | 11 |
IX | 12 |
XCI | 233 |
XCII | 237 |
XCIII | 241 |
XCV | 244 |
XCVII | 246 |
XCVIII | 247 |
XCIX | 250 |
C | 251 |
X | 15 |
XI | 17 |
XII | 19 |
XIII | 22 |
XIV | 23 |
XV | 26 |
XVII | 30 |
XVIII | 33 |
XIX | 35 |
XX | 36 |
XXI | 37 |
XXII | 38 |
XXV | 39 |
XXVI | 40 |
XXVII | 41 |
XXIX | 42 |
XXXII | 44 |
XXXIV | 45 |
XXXV | 46 |
XXXVI | 47 |
XXXVII | 50 |
XXXVIII | 53 |
XXXIX | 55 |
XL | 56 |
XLI | 58 |
XLII | 63 |
XLIII | 64 |
XLIV | 74 |
XLV | 75 |
XLVI | 78 |
XLVII | 83 |
XLVIII | 88 |
XLIX | 97 |
L | 102 |
LI | 104 |
LII | 105 |
LIII | 106 |
LIV | 107 |
LV | 109 |
LVI | 112 |
LVII | 115 |
LVIII | 116 |
LX | 122 |
LXI | 130 |
LXII | 131 |
LXIII | 135 |
LXIV | 142 |
LXVI | 146 |
LXVII | 148 |
LXVIII | 149 |
LXIX | 152 |
LXX | 159 |
LXXI | 171 |
LXXII | 174 |
LXXIV | 182 |
LXXV | 191 |
LXXVI | 197 |
LXXVII | 202 |
LXXVIII | 206 |
LXXIX | 208 |
LXXXII | 212 |
LXXXIII | 214 |
LXXXIV | 215 |
LXXXV | 217 |
LXXXVI | 224 |
LXXXVII | 226 |
LXXXVIII | 228 |
LXXXIX | 230 |
XC | 231 |
CI | 255 |
CII | 257 |
CIII | 259 |
CIV | 263 |
CV | 264 |
CVI | 269 |
CVII | 270 |
CVIII | 271 |
CX | 272 |
CXI | 273 |
CXII | 277 |
CXIII | 282 |
CXIV | 285 |
CXVI | 288 |
CXVII | 290 |
CXVIII | 294 |
CXIX | 299 |
CXX | 301 |
CXXI | 307 |
CXXII | 308 |
CXXIII | 312 |
CXXIV | 314 |
CXXV | 315 |
CXXVI | 317 |
CXXVII | 324 |
CXXVIII | 325 |
CXXIX | 327 |
CXXX | 330 |
CXXXI | 331 |
CXXXIII | 333 |
CXXXV | 335 |
CXXXVI | 336 |
CXXXVII | 338 |
CXXXVIII | 341 |
CXXXIX | 350 |
CXL | 352 |
CXLI | 356 |
CXLII | 357 |
CXLIII | 363 |
CXLIV | 366 |
CXLV | 367 |
CXLVI | 373 |
CXLVII | 377 |
CXLVIII | 380 |
CXLIX | 383 |
CLI | 386 |
CLII | 390 |
CLIII | 392 |
CLV | 393 |
CLVI | 396 |
CLVII | 407 |
CLVIII | 414 |
CLIX | 415 |
CLX | 417 |
CLXI | 419 |
CLXII | 434 |
CLXIII | 442 |
CLXIV | 443 |
CLXV | 444 |
447 | |
CLXVII | 449 |
CLXVIII | 459 |
CLXIX | 463 |
CLXX | 471 |
CLXXI | 472 |
CLXXII | 475 |
CLXXIV | 477 |
CLXXV | 479 |
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Common terms and phrases
alloy annealed antiferromagnetic Appl atoms band behavior bond Brillouin zone calculated carbon nanotubes Cardona catalyst chain conformation characterization Chem cm-¹ components configuration corresponding coupling crystalline density dependence diamond diffraction disorder doped Dresselhaus effect eigenvectors electronic energy excitations exciton experimental Fermi films fullerene function GaAs geometry graphene graphite HTSC Intensity arb interaction interface ions laser lattice layer Lett Light Scattering M.S. Dresselhaus magnons materials measured metal MnO3 molecular molecules observed obtained optical phonons orientation orthorhombic oxides oxygen parameters perovskite perturbation phase phonon Phys Pinczuk polymer quantum Raman frequency Raman intensity Raman modes Raman peak Raman scattering Raman shift cm¹ Raman spectra Raman spectroscopy Raman tensor Raman-active resonant Raman sample scattering efficiency Scattering in Solids second-order semiconductors shown in Fig single crystals Solid State Commun spectrometer spectrum stress structure superconducting surface symmetry techniques temperature transitions unit cell vibrational modes wave vector wavelength zincblende
References to this book
Optical Nonlinearities in Chalcogenide Glasses and Their Applications A. Zakery,S.R. Elliott Limited preview - 2007 |
Photo-Induced Metastability in Amorphous Semiconductors Alexander V. Kolobov No preview available - 2006 |