The Non-Equilibrium Green's Function Method for Nanoscale Device Simulation (Computational Microelectronics)
This book introduces the Non-Equilibrium Green's Function method, a key tool for simulating nanoscale devices in computational microelectronics. Authored by Mahdi Pourfath, it covers theoretical principles and practical applications for modeling complex semiconductor behaviors under non-equilibrium conditions, essential for advancing microelectronic technologies.
About This Book
The Non-Equilibrium Green's Function Method for Nanoscale Device Simulation offers a comprehensive guide to applying this advanced technique in computational microelectronics.
Authored by Mahdi Pourfath, the book delves into the theoretical foundations and practical implementations necessary for modeling nanoscale devices accurately.
Readers will gain insights into handling non-equilibrium conditions, crucial for simulating modern semiconductor technologies.
This work is part of the Computational Microelectronics series, focusing on computational approaches to microelectronic design and analysis.
It serves as a valuable resource for researchers and engineers working on next-generation nanoscale electronics.
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