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Park R., Lagally M. — Methods of Experimental Physics.Volume 22.Solid State Physics:Surfaces.
Park R., Lagally M. — Methods of Experimental Physics.Volume 22.Solid State Physics:Surfaces.



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Название: Methods of Experimental Physics.Volume 22.Solid State Physics:Surfaces.

Авторы: Park R., Lagally M.

Аннотация:

The importance of the properties of surfaces is increasingly felt in a wide variety of technologies. Although some surface properties, such as chemical interactions leading to corrosion, have been recognized for many hundreds of years, the use of surfaces for specific applications is a recent phenomenon that is fueled by our increasing understanding of their properties. The technological success of devices and processes involving surfaces has in turn driven the development of increasingly sophisticated instrumentation designed to improve further our understanding of surface properties. This volume attempts to review, in a tutorial fashion, techniques that allow a definition of the major static properties of a surface. These can be classified as chemical or compositional, structural, and electronic. Because this volume is one in a treatise on experimental methods, the emphasis is deliberately on the techniques, their use, and the evaluation of measurements, rather than principally on the surface properties themselves.


Язык: en

Рубрика: Физика/

Статус предметного указателя: Готов указатель с номерами страниц

ed2k: ed2k stats

Год издания: 1985

Количество страниц: 565

Добавлена в каталог: 20.08.2014

Операции: Положить на полку | Скопировать ссылку для форума | Скопировать ID
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Предметный указатель
Uhlaner, C.J.      473
Ulehla, M.V.K.      122(261)
Ulmer, K.      221
Ultraviolet photoelectron spectroscopy      33 484 485 503
Umbach, E.      68
Undulators      184
Unterwald, F.      238
Unwin, R.      84 85(183) 91(183)
Ustinov, Y.K.      444
Utlaut, M.      508 511(110)
Uva, E.      40
Vacuum level      128
Valyi, L.      497
van der Veen, J.F.      225 467 492 493(21) 494(21)
van der Weg, W.F.      316 336 337(101)
van der Wiel, M.J.      481
Van Hove, J.M.      264 271 276 277(68) 284(57) 288(57 68) 295
Van Hove, M.A.      62 84 122(182) 238 239 254(17) 271(17) 291(17)
Van Oostrom, A.      390 410(289) 506 507
Van Oostrom, A.G.J.      352 360 361(20) 369(20) 390 410(289)
Vanderslice, T.A.      444
Vastel, J.      338
Vaughan, R.W.      105
Venables, J.A.      437
Verbeek, H.      306 307(23) 313
Verbraak, C.A.      410(285)
Verhey, L.K.      306 311 328(40)
Verhoeven, J.      512
Vernickel, H.      367
Vibrational coupling      62
Vibrational coupling, intermolecular      64
Vibrational coupling, intramolecular      62
Vidicon camera      285 488
Viehboeck, F.P.      328
Vierle, O.      26
von Ardenne, M.      313
Vorburger, T.V.      11
Voss, D.E.      345 347
Vukanic, J.      299 313(7) 472
Wachs, I.E.      107
Wagener, S.      21
Wagner, A.      410
Wagner, C.D.      507
Wagner, H.      22 122(257 259 281) 443
Walko, R.J.      392 393 412
Wallbridge, M.G.H.      110 112(245)
Walls, J.M.      368 395
Walther, H.      77
Walther, V.      299
Wang, C.      366 442
Wang, G.-C.      238 239 255(27) 269 270(59) 280 293 296
Watanabe, T.      400
Watson, D.J.      74(158) 75 416
Watson, P.R.      285
Watts, A.J.      410
Waugh, A.R.      403 410(293) 412 415
Weaver, J.H.      152 159
Webb, M.B.      239 242 243(34 47) 271 273 274 275 276 284 290
Weber, R.E.      227
Weeks, S.P.      140 488
Weheeler, M.A.Z.      326
Wehner, G.K.      329 331
Weinberg, W.H.      26 28 31 34(57) 39 43 44 47(59 61 62) 48 52 62 63 64(62) 65 67 68 70 71 72(146) 73 84 95 96 98 99 101 102 105 106 107(232) 108(202) 109(202) 110(203 205 210 241) 111 112(203 204 205 241) 114 115 116 117(146) 122 123(266) 434 449 450(58) 451(58) 457 462 500 504(83)
Weissler, G.L.      7
Weissmann, R.      231 330
Welkie, D.G.      238 239 247 248 257 273(9) 277(41) 286(9) 291(9) 292
Welter, L.M.      368
Wendelken, J.F.      26 30(38) 34(38) 122(38 261) 289 432
Wertheim, G.K.      225 231
Westerberg, E.R.      401
Wheatley, G.H.      313 316 319 320(59)
Whelan, J.M.      329
Whitcutt, R.D.B.      361
White, C.W.      305 306(17) 307(17) 310(17) 336 337 347
White, J.M.      70 107
Whitton, J.L.      334 335
Width of energy distribution for field-ionized hydrogen      381
Wigglers      184
Williams, D.W.      368
Williams, E.D.      65 105 115(143) 116(143) 443
Williams, E.M.      474 475(49) 499
Williams, M.W.      197
Williams, P.      337
Williams, P.R.      410(282) 415
Williams, R.H.      165
Williams, R.S.      507 509
Williams, W.T.      368
Willis, R.F.      26 27(46) 32 33(43 44 45 46) 34(70 71) 47(68 69 70 71) 48(69 70 71) 50(44 68 69) 51(70 71) 122(43 44 45 46 68 69 70 71 282)
Willis, W.R.      331
Wilson, K.      311
Winograd, N.      498 500 504(83)
Winters, H.F.      512 513(129)
Withrow, S.P.      289 432 434
Witmore, R.W.      107
Wittmaack, K.      328 329 332(86) 337(86) 340(77)
WKB approximation      352 379
Wolf, P.      372
Wolfram, T.      29 47(60) 95(60) 96(60)
Wong, J.W.      507 509
Wood's metal      403
Wood, J.V.      410(286)
Woodruff D.P.      138 304 476 482 494
work function      2 8 14 19 21 128 137 141 145 148 155 167 206 350 356 359 375 397
Work function measurement      15
Work function measurement, capacitance method      17
Work function measurement, electron beam method      14
Work function measurement, emission method      4
Work function measurement, field-emission retarding-potential method      15
Work function measurement, retarding-potential method      11
Work function measurement, technique comparison      19
Work function measurement, thermionic method      6
Work function versus surface coverage      439
Work function, adsorbate      9
Work function, adsorption      3 5 9 21
Work function, band structure effects      11
Work function, crystallographic direction      9
Work function, different planes      21
Work function, dipole layer      3
Work function, dipole moment discreteness      10
Work function, geometric factor      9
Work function, individual crystal planes      9
Work function, ordering      21
Work function, patch effects      5
Work function, single crystal      21
Work function, temperature dependence      5
Work function, theory      2
Work function, thermal desorption      5
Work function, true      10
Work function, variation      9
Work function, variation with temperature      14
Worley, S.D.      105
Wortman, R.      364
x-ray absorption      189
X-ray emission      189
X-ray excited Auger spectroscopy      503
X-ray photoelectron spectroscopy      189 214 503 507
X-ray regime      150
Yahiku, A.T.      403
Yamato, Y.      400
Yang, A.C.      105
Yao, H.C.      105 326
Yates, J.T., Jr.      25 26 27(25) 36 67 70(145 146) 71(145 146) 72(146) 73(145 146) 92 94(195 196 197) 105 117(146) 122(145 146) 428 431 432 433 440 443 444 446 448 452 453 457 461(64) 464 465 466 467 471 473 474 485 486 487(6) 498(1 6) 499(1 6) 500 502(1) 503 509
Yermakov, Y.I.      110
Yonas, G.      368
Yoneda, Y.      107
Yonts, O.C.      331
Yoshida, R.      400
Yoshida, T.      400
Yoshida, Y.      400
Young, J.P.      498
Young, R.D.      361
Yu, M.L.      466 493
Yurasova, V.E.      307
Zakharov, V.A.      110
Zandberg, E.Y.      497
Zare, R.N.      498
Zartner, A.      300 301 305(20) 307(10) 314(20) 493
Zero-order desorption kinetics      425 437 438
Zettlemoyer, A.C.      443
Zhang, Q.-J.      469 496
Zhao, L.-H.      238 239(27) 255(27)
Zinc-Phthalocyanine      372
Ziskoven, Z.      400
Zorn, J.C.      495 497
Zuccaro, C.      74(158) 75
1 2 3 4 5 6 7 8
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