Optical Processes In Semiconductors (Dover Books On Physics)

Optical Processes In Semiconductors (Dover Books On Physics)

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Based On A Series Of Lectures At Berkeley, 19681969, This Is The First Book To Deal Comprehensively With All Of The Phenomena Involving Light In Semiconductors. The Author Has Combined, For The Graduate Student And Researcher, A Great Variety Of Source Material, Journal Research, And Many Years Of Experimental Research, Adding New Insights Published For The First Time In This Book.Coverage Includes Energy States In Semiconductors And Their Perturbation By External Parameters, Absorption, Relationships Between Optical Constants, Spectroscopy, Radiative Transitions, Nonradiative Recombination, Processes In Pn Junctions, Semiconductor Lasers, Interactions Involving Coherent Radiation, Photoelectric Emission, Photovoltaic Effects, Polarization Effects, Photochemical Effects, Effect Of Traps On Luminescence, And Reflective Modulation.The Author Has Presented The Subject In A Manner Which Couples Readily To Physical Intuition. He Introduces New Techniques And Concepts, Including Nonradiative Recombination, Effects Of Doping On Optical Properties, Franzkeldysh Effect In Absorption And Emission, Reflectance Modulation, And Many Others. Dr. Pankove Emphasizes The Underlying Principle That Can Be Applied To The Analysis And Design Of A Wide Variety Of Functional Devices And Systems. Many Valuable References, Illustrative Problems, And Tables Are Also Provided Here.

⚠️ WARNING (California Proposition 65):

This product may contain chemicals known to the State of California to cause cancer, birth defects, or other reproductive harm.

For more information, please visit www.P65Warnings.ca.gov.

  • Q: How many pages are in the book? A: There are four hundred forty-eight pages in the book. This length provides an in-depth exploration of optical processes in semiconductors.
  • Q: What is the binding type of this book? A: The book is available in paperback binding. This format is lightweight and convenient for reading.
  • Q: What are the dimensions of the book? A: The book measures five point seventy-two inches in length, zero point eighty-four inches in width, and eight point sixteen inches in height. These dimensions make it portable and easy to handle.
  • Q: Who is the author of this book? A: The author of the book is Jacques I. Pankove. He is known for his extensive research and expertise in the field of semiconductors.
  • Q: What is the main subject covered in this book? A: This book covers optical processes in semiconductors. It provides a comprehensive understanding for graduate students and researchers.
  • Q: Is this book suitable for beginners? A: Yes, the book is suitable for graduate students and researchers. It presents complex topics in a manner that connects with physical intuition.
  • Q: How can I use this book for my studies? A: You can use this book as a reference for understanding optical phenomena in semiconductors. It includes valuable references and illustrative problems to aid learning.
  • Q: What reading level is this book intended for? A: The book is intended for graduate-level students and researchers. It assumes a foundational knowledge of physics and semiconductor concepts.
  • Q: How should I care for this paperback book? A: To care for this paperback book, store it in a cool, dry place away from direct sunlight. Handle it gently to avoid bending the cover or pages.
  • Q: Is there a warranty on this book? A: No, there is typically no warranty on books. However, check with the seller for their return policy.
  • Q: What if the book arrives damaged? A: If the book arrives damaged, contact the seller or retailer for a replacement or refund. Be sure to provide evidence of the damage.
  • Q: Can this book help with practical applications? A: Yes, the book emphasizes principles applicable to the analysis and design of semiconductor devices. It provides insights useful for practical applications.
  • Q: What unique techniques are introduced in this book? A: The book introduces several unique techniques, including nonradiative recombination and reflectance modulation. These concepts are vital for understanding semiconductor behavior.
  • Q: Are there exercises or problems in the book? A: Yes, the book includes illustrative problems and tables. These are designed to reinforce understanding of complex optical processes.
  • Q: What category does this book fall under? A: The book falls under the Engineering category. It is specifically focused on the field of physics related to semiconductors.
  • Q: Is this book suitable for self-study? A: Yes, this book is suitable for self-study. Its comprehensive coverage and structured approach make it a valuable resource for independent learners.

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