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He is also an editorial board member of various scientific journals, and he is the Principal Editor-in-Charge of the book series Foundations of Natural Science and Technology. Handbook of Theoretical and Computational Nanotechnology. The future applications of nanotechnology in high-tech industries require deep understanding of the theoretical and computational aspects of all kinds of materials and devices at a nanometer scale.

Handbook of Theoretical and Computational Nanotechnology is the first single reference source ever published in field that offers such an unified approach covering all of the major topics dealing with theory, modeling, design and simulations of nanostructured materials and nanodevices, quantum computing, computational chemistry, physics and biology, nanomechanics, nanomachines, nanoelectronics, nanoprocesses, nanomagnetism, nano-optics, nanomedicines, nanobiotechnology, etc. This volume ca. This handbook is the most profound publication on this topic- the first treatment of the computational nanotechnology.

This outstanding handbook presented by world's leading scientists, is the most significant academic title ever published in this research field. This handbook has been divided into 10 thematic volumes by documenting computational treatment of nanomaterials and nanodevices.

Volume 1: Basic Concepts, Nanomachines and Bionanodevices. Volume 2: Atomistic Simulations - Algorithms and Methods. Volume 4: Nanomechanics and Multiscale Modeling.

Publication details

Volume 5: Transport Phenomena and Nanoscale Processes. Volume 6: Bioinformatics, Nanomedicine and Drug Delivery.


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Volume 7: Magnetic Nanostructures and Nano-optics. Volume 9: Nanocomposites, Nano-Assemblies, and Nanosurfaces. Volume Nanodevice Modeling and Nanoelectronics.


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The World's first handbook ever published in the field of theoretical and computational nanotechnology. The first comprehensive reference dedicated to all disciplines of science, engineering. Most up-to-date reference source drawing on the past two decades of pioneering research.

ISBN 10: 1420075446

Pang and Y. Bi, K. Song and H. Doniach and E. Bi and H. Wu, et al.

Suggested Online Reference

Bi, X. Xing and H. Schirmer, A. Greentree, V.

Handbook of Theoretical and Computational Nanotechnology

Ramakrishna and H. Ramakrishna, R. Ober, X.

Synthesis of ZnO Quantum Dots

Sun, O. Steuernagel, J.

Handbook of Nanophysics

Botina and H. Share This Article:. The paper is not in the journal. Go Back HomePage. DOI: Qiao Bi , Kongzhi Song. ABSTRACT In this work, a mechanism of macroscopic quantum tunneling is studied, which shows this sort of phenomena may exist even in the bio-field system. The relevant Davydov solitons fields and the Feynman digraph have been constructed based on the nonlinear Green function theory, which allows one to get a synchronous resonance model to explain the macroscopic quantum tunneling, such as in double potential wells system.

Furthermore, the functional of quantum information density can also be applied to drive the object into a type of soliton structure of quantum information density, which allows the system to possess property of the macroscopic quantum tunneling.

An adapted Coffey model for studying susceptibility losses in interacting magnetic nanoparticles

Conflicts of Interest The authors declare no conflicts of interest. Cite this paper Q. Bi and K.


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