LEADER 03196nam a2200325Ii 4500 001 991003233349707536 008 070802s2005 ne a sb 001 0 eng d 020 $a9780080447230 020 $a0080447236 035 $ab13652710-39ule_inst 040 $aBibl. Dip.le Aggr. Ingegneria Innovazione - Sez. Ingegneria Innovazione$beng 082 04$a666.88$222 100 1 $aKobashi, Koji$0627406 245 10$aDiamond films$h[e-book] :$bchemical vapor deposition for oriented and heteroepitaxial growth /$cKoji Kobashi 260 $aAmsterdam ; :$bLondon :$bElsevier,$c2005 300 $axii, 336 p. :$bill. ;$c25 cm 504 $aIncludes bibliographical references (p. 319-334) and indexes 505 0 $a1. Overview of Oriented Growth -- 2. Diamond - Structure and CVD Growth -- 3. Microwave Plasma CVD Reactors -- 4. Other CVD Reactors -- 5. Crystal Orientations and Film Surface Morphology -- 6. Formation of Twins -- 7. Homoepitaxial Growth -- 8. Surface Reconstruction -- 9. Epitaxial Growth on cBN, Ni, and Other Substrates -- 10. Diamond Nucleation -- 11. HOD Film Growth -- 12. Oriented Growth on Noble Metals -- 13. Properties and Applications of Heteroepitaxial Diamond Films -- 14. Conclusion -- APPENDICES --
  • Notations and units
  • --
  • Plasma
  • --
  • Properties of diamond and other semiconducting materials
  • --
  • Reconstruction of diamond surfaces
  • --
  • Materials constants
  • --
  • Phase diagrams of carbon and metals
  • --
  • Carbon solubilities in metals
  • --
  • Biasing and growth conditions for diamond growth
  • 520 $a
  • Discusses the most advanced techniques for diamond growth
  • Assists diamond researchers in deciding on the most suitable process conditions
  • Inspires readers to devise new CVD (chemical vapor deposition
  • Ever since the early 1980s, and the discovery of the vapour growth methods of diamond film, heteroexpitaxial growth has become one of the most important and heavily discussed topics amongst the diamond research community. Kobashi has documented such discussions with a strong focus on how diamond films can be best utilised as an industrial material, working from the premise that crystal diamond films can be made by chemical vapour disposition. Kobashi provides information on the process and characterization technologies of oriented and heteroepitaxial growth of diamond films 533 $aElectronic reproduction.$bAmsterdam :$cElsevier Science & Technology,$d2007.$nMode of access: World Wide Web.$nSystem requirements: Web browser.$nTitle from title screen (viewed on July 25, 2007).$nAccess may be restricted to users at subscribing institutions 650 0$aDiamonds, Artificial 650 0$aDiamond thin films 655 7$aElectronic books.$2local 776 1 $cOriginal$z0080447236$z9780080447230$w(OCoLC)63185437 856 40$3Referex$uhttp://www.sciencedirect.com/science/book/9780080447230$zAn electronic book accessible through the World Wide Web; click for information 907 $a.b13652710$b03-03-22$c24-01-08 912 $a991003233349707536 996 $aDiamond films$91212843 997 $aUNISALENTO 998 $ale026$b24-01-08$cm$d@ $e-$feng$gne $h0$i0 LEADER 04842nam 2200637Ia 450 001 9910779506103321 005 20200520144314.0 010 $a1-61122-922-7 035 $a(CKB)2550000001041187 035 $a(EBL)3018197 035 $a(SSID)ssj0000834813 035 $a(PQKBManifestationID)11526159 035 $a(PQKBTitleCode)TC0000834813 035 $a(PQKBWorkID)10989720 035 $a(PQKB)10109463 035 $a(MiAaPQ)EBC3018197 035 $a(Au-PeEL)EBL3018197 035 $a(CaPaEBR)ebr10659119 035 $a(OCoLC)923657387 035 $a(EXLCZ)992550000001041187 100 $a20091210d2009 uy 0 101 0 $aeng 135 $aur|n|---||||| 181 $ctxt 182 $cc 183 $acr 200 00$a3D imaging$b[electronic resource] $etheory, technology and applications /$fEmerson H. Duke and Stephen R. Aguirre, editors 210 $aNew York $cNova Science Publishers$dc2009 215 $a1 online resource (343 p.) 225 1 $aComputer Science, Technology and Applications 300 $aDescription based upon print version of record. 311 $a1-60876-885-6 320 $aIncludes bibliographical references and index. 327 $a""3D IMAGING: THEORY, TECHNOLOGY AND APPLICATIONS ""; ""3D IMAGING: THEORY, TECHNOLOGY AND APPLICATIONS ""; ""CONTENTS""; ""PREFACE""; ""3D IMAGING OF ABDOMINAL AORTIC ANEURYSMS: TECHNIQUES AND APPLICATIONS ""; ""ABSTRACT""; "" Background""; ""Methods""; ""Results""; ""Conclusion""; ""1. INTRODUCTION ""; ""1.1 Incidence and Current Opinions ""; ""1.2 Medical Imaging""; ""2. 3D RECONSTRUCTION FROM CT SCANS ""; ""3. APPLICATIONS OF AAA 3D RECONSTRUCTIONS ""; ""4. NUMERICAL INVESTIGATIONS ""; ""4.1 Pre-Operative Planning for EVAR""; ""4.2 Stent-Graft Design"" 327 $a""4.3 Optimum Smoothing of 3D Models """"4.4 Determining AAA Asymmetry""; ""4.5 Improving Rupture Predictions""; ""4.6 Pre and Post-Operative Biomechanics""; ""4.7 Computer-Aided Design and Computer-Aided Manufacture ""; ""5. EXPERIMENTAL INVESTIGATIONS ""; ""5.1 In-Vitro Models ""; ""5.2 The Photoelastic Method ""; ""5.3 Improving Experimental Materials""; ""5.3.1 Material Selection, Development and Testing ""; ""5.3.2 Application to 3D Geometries ""; ""5.4 Experimental Rupture Testing""; ""6. CONCLUSION ""; ""ACKNOWLEDGMENTS ""; ""REFERENCES "" 327 $a""3D IMAGING OF PHASE MICROSCOPIC OBJECTS BY DIGITAL HOLOGRAPHIC METHOD""""ABSTRACT ""; ""INTRODUCTION ""; ""1. CLASSICAL AND HOLOGRAPHIC METHODS OF PHASE MICROOBJECTS VISUALIZATION ""; ""1.1 Classical Methods of Phase Microscopic Objects Visualization ""; ""1.1.1 Zernike phase-contrast method""; ""1.1.2 The method of interference contrast ""; ""1.2 Holography as the Method of Recoding and Reconstruction of Waves ""; ""1.3 Holographic Methods of Phase Microscopic Objects Visualization ""; ""1.3.1 History of holographic microscopy "" 327 $a""1.3.2 Holographic phase-contrast method (the method of holographic addition and subtraction in an interference fringe) """"1.3.3 The method of holographic interferometry in fringes of finite width ""; ""1.3.4 Comparison of the possibilities of the holographic methods for solution the problem of obtaining 3D images of phase microobjects ""; ""1.4 Digital Holographic Interference Microscope ""; ""2. APPLICATION OF THE DIGITAL HOLOGRAPHIC MICROSCOPY FOR PHASE MICROOBJECTS STUDY""; ""2.1 DHIM Study of The 3D Morphology of Blood Erythrocytes""; ""2.2 DHIM Study of Thin Transparent Films "" 327 $a""CONCLUSION""""REFERENCES ""; ""ELECTRON MICROSCOPE TOMOGRAPHY IN STRUCTURAL BIOLOGY ""; ""ABSTRACT ""; ""INTRODUCTION""; ""DATA ACQUISITION""; ""PRE-PROCESSING: ALIGNMENT AND RESTORATION ""; ""TOMOGRAPHIC RECONSTRUCTION""; ""POST-PROCESSING AND INTERPRETATION OF TOMOGRAMS ""; ""AN ILLUSTRATIVE EXAMPLE: EMT OF VACCINIA VIRUS ""; ""HIGH PERFORMANCE COMPUTING IN EMT ""; ""SOFTWARE TOOLS FOR EMT ""; ""CONCLUSION ""; ""ACKNOWLEDGMENTS""; ""REFERENCES""; ""THREE-DIMENSIONAL IMAGING AND PROCESSING""; ""ABSTRACT ""; ""1. INTRODUCTION ""; ""2. CURRENT STATUS AND PROBLEM "" 327 $a""3. 3D RECONSTRUCTION ALGORITHM "" 410 0$aComputer Science, Technology and Applications 606 $aThree-dimensional imaging$xIndustrial applications 606 $aThree-dimensional imaging in medicine 606 $aThree-dimensional imaging in biology 615 0$aThree-dimensional imaging$xIndustrial applications. 615 0$aThree-dimensional imaging in medicine. 615 0$aThree-dimensional imaging in biology. 676 $a621.36/7 701 $aDuke$b Emerson H$01481231 701 $aAguirre$b Stephen R$01481232 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9910779506103321 996 $a3D imaging$93698095 997 $aUNINA