Heterojunction band discontinuities : physics and device applications
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書誌事項
Heterojunction band discontinuities : physics and device applications
North-Holland , Sole distributors for the USA and Canada, Elsevier Science Pub. Co., 1987
- : pbk
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注記
Includes bibliographies and indexes
内容説明・目次
- 巻冊次
-
ISBN 9780444870605
内容説明
Now also available in paperback is a work which provides the first comprehensive overview of the results obtained after the 1970s. A thorough description is given of the properties of semiconductor heterojunctions, and their applications in novel devices. Particular emphasis is given to the interface band discontinuities. Written by top experts in the field this book will be welcomed by engineers, physicists and students interested in modern microelectronics.
目次
Introduction. Part I: Band Discontinuities: Measurements and Theory. 1. The theory of heterojunction band lineups (J. Tersoff). 2. The problem of heterojunction band discontinuities (G. Margaritondo and P. Perfetti). 3. Trends in semiconductor heterojunctions (A.D. Katnani). 4. Interface contributions to heterojunction band discontinuities: X-ray photoemission spectroscopy investigations (R.W. Grant, E.A. Kraut, J.R. Waldrop and S.P. Kowalczyk). 5. Measurements of band discontinuities using optical techniques (G. Duggan). 6. The direct optical determination of GaAs/A1 x Ga 1-x As valence-band offsets (D.J. Wolford, T.F. Keuch and M. Jaros). 7. Band discontinuities in HgTe-CdTe superlattices (J.P. Faurie and Y. Guldner). 8. Measurement of energy band offsets using capacitance and current measurement techniques (S.R. Forrest). 9. Measurement of band offsets by space charge spectroscopy (D.V. Lang). Part II: Physics of Heterojunction Devices: Band-gap Engineering. 10. Band-gap engineering and interface engineering: from graded-gap structures to tunable band discontinuities (F. Capasso). 11. Modern aspects of heterojunction transport theory (K. Hess and G.J. Iafrate). 12. Hot-electron injection and resonant-tunneling heterojunction devices (S. Luryi). 13. Physics of quantum well lasers (N.K. Dutta). 14. Physics and applications of excitons confined in semiconductor quantum wells (D.S. Chemla and D.A.B. Miller). Author Index. Subject Index.
- 巻冊次
-
: pbk ISBN 9780444880901
内容説明
Now also available in paperback is a work which provides the first comprehensive overview of the results obtained after the 1970s. A thorough description is given of the properties of semiconductor heterojunctions, and their applications in novel devices. Particular emphasis is given to the interface band discontinuities.
Written by top experts in the field this book will be welcomed by engineers, physicists and students interested in modern microelectronics.
目次
Introduction. Part I: Band Discontinuities: Measurements and Theory. 1. The theory of heterojunction band lineups (J. Tersoff). 2. The problem of heterojunction band discontinuities (G. Margaritondo and P. Perfetti). 3. Trends in semiconductor heterojunctions (A.D. Katnani). 4. Interface contributions to heterojunction band discontinuities: X-ray photoemission spectroscopy investigations (R.W. Grant, E.A. Kraut, J.R. Waldrop and S.P. Kowalczyk). 5. Measurements of band discontinuities using optical techniques (G. Duggan). 6. The direct optical determination of GaAs/A1xGa1-xAs valence-band offsets (D.J. Wolford, T.F. Keuch and M. Jaros). 7. Band discontinuities in HgTe-CdTe superlattices (J.P. Faurie and Y. Guldner). 8. Measurement of energy band offsets using capacitance and current measurement techniques (S.R. Forrest). 9. Measurement of band offsets by space charge spectroscopy (D.V. Lang). Part II: Physics of Heterojunction Devices: Band-gap Engineering. 10. Band-gap engineering and interface engineering: from graded-gap structures to tunable band discontinuities (F. Capasso). 11. Modern aspects of heterojunction transport theory (K. Hess and G.J. Iafrate). 12. Hot-electron injection and resonant-tunneling heterojunction devices (S. Luryi). 13. Physics of quantum well lasers (N.K. Dutta). 14. Physics and applications of excitons confined in semiconductor quantum wells (D.S. Chemla and D.A.B. Miller). Author Index. Subject Index.
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