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Using Mathematica for Quantum Mechanics : A Student's Manual / by Roman Schmied.
Connect to full text Available online
View online- Format:
- Book
- Author/Creator:
- Schmied, Roman, 1976- author.
- Series:
- Physics and Astronomy (Springer-11651)
- Language:
- English
- Subjects (All):
- Quantum theory.
- Physics.
- Atomic structure.
- Molecular structure.
- Quantum field theory.
- String models.
- Quantum Physics.
- Numerical and Computational Physics, Simulation.
- Mathematical Methods in Physics.
- Atomic/Molecular Structure and Spectra.
- Quantum Field Theories, String Theory.
- Local Subjects:
- Quantum Physics.
- Numerical and Computational Physics, Simulation.
- Mathematical Methods in Physics.
- Atomic/Molecular Structure and Spectra.
- Quantum Field Theories, String Theory.
- Physical Description:
- 1 online resource (XII, 193 pages) : 1418 illustrations, 59 illustrations in color
- Edition:
- First edition 2020.
- Contained In:
- Springer eBooks
- Place of Publication:
- Singapore : Springer Singapore : Imprint: Springer, 2020.
- System Details:
- text file PDF
- Summary:
- This book revisits many of the problems encountered in introductory quantum mechanics, focusing on computer implementations for finding and visualizing analytical and numerical solutions. It subsequently uses these implementations as building blocks to solve more complex problems, such as coherent laser-driven dynamics in the Rubidium hyperfine structure or the Rashba interaction of an electron moving in 2D. The simulations are highlighted using the programming language Mathematica. No prior knowledge of Mathematica is needed; alternatives, such as Matlab, Python, or Maple, can also be used.
- Contents:
- Wolfram language overview
- Quantum mechanics: states and operators
- spin and angular momentum
- Quantum motion in real space
- Combining spatial motion and spin.
- Other Format:
- Printed edition:
- ISBN:
- 978-981-13-7588-0
- 9789811375880
- Access Restriction:
- Restricted for use by site license.
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