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Quantum Mesoscopic Phenomena and Mesoscopic Devices in Microelectronics

Quantum Mesoscopic Phenomena and Mesoscopic Devices in Microelectronics

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"Quantum Mesoscopic Phenomena and Mesoscopic Devices in Microelectronics" by Igor O. Kulik, Recai Ellialtıoğlu is a physics book focused on Devices & Sensors. Best for students, educators, and scientifically curious readers.

Quantum mechanical laws are well documented at the level of a single or a few atoms and are here extended to systems containing 102 to 1010 electrons - still much smaller than the usual macroscopic objects, but behaving in a manner similar to a single atom. Besides the purely theoretical interest, such systems pose a challenge to the achievement of the ultimate microelectronic applications. The present volume presents an up-to-date account of the physics, technology and expected applications of quantum effects in solid-state mesoscopic structures. Physical phenomena include the Aharonov-Bohm effect, persistent currents, Coulomb blockade and Coulomb oscillations in single electron devices, Andreev reflections and the Josephson effect in superconductor/normal/superconductor systems, shot noise suppression in microcontacts and contact resistance quantisation, and overall quantum coherence in mesoscopic and nanoscopic structures related to the emerging physics of quantum computation in the solid-state environment.

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Best For: Researchers and students in microelectronics and condensed matter physics
Focus: Quantum mechanical behavior in systems with 10^2 to 10^10 electrons and their implications for microelectronic devices
Covers: Theoretical foundations and challenges in applying quantum mechanics to mesoscopic systems relevant to microelectronics
Why It Matters: Understanding mesoscopic quantum phenomena is essential for advancing microelectronic device technology beyond traditional macroscopic approaches

"Quantum Mesoscopic Phenomena and Mesoscopic Devices in Microelectronics" by Igor O. Kulik, Recai Ellialtıoğlu is a physics book focused on Devices & Sensors. Best for students, educators, and scientifically curious readers.

Topic: Devices & Sensors

Author: Igor O. Kulik, Recai Ellialtıoğlu

Who this is for:

  • Physics students
  • Science-minded readers
  • Readers building technical understanding

Why this book matters: It provides structured coverage of physics concepts in a way that supports deeper understanding and continued study.

Quantum mechanical laws are well documented at the level of a single or a few atoms and are here extended to systems containing 102 to 1010 electrons - still much smaller than the usual macroscopic objects, but behaving in a manner similar to a single atom. Besides the purely theoretical interest, such systems pose a challenge to the achievement of the ultimate microelectronic applications. The present volume presents an up-to-date account of the physics, technology and expected applications of quantum effects in solid-state mesoscopic structures. Physical phenomena include the Aharonov-Bohm effect, persistent currents, Coulomb blockade and Coulomb oscillations in single electron devices, Andreev reflections and the Josephson effect in superconductor/normal/superconductor systems, shot noise suppression in microcontacts and contact resistance quantisation, and overall quantum coherence in mesoscopic and nanoscopic structures related to the emerging physics of quantum computation in the solid-state environment.

AuthorIgor O. Kulik, Recai Ellialtıoğlu
PublisherSpringer Science & Business Media
Published2000
ISBN-139780792366256
BindingHardcover
Pages524
LanguageEnglish
SubjectsMedical
TopicDevices & Sensors
SeriesNATO Science Series C: Mathematical and Physical Science (Hardcover)

Format: Hardcover

Length: 524 pages

Language: English

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