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  • Introduction to Tensor Network Methods: Numerical simulations of low-dimensional many-body quantum systems

    Introduction to Tensor Network Methods by Montangero, Simone;

    Numerical simulations of low-dimensional many-body quantum systems

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      • Publisher's listprice EUR 171.19
      • The price is estimated because at the time of ordering we do not know what conversion rates will apply to HUF / product currency when the book arrives. In case HUF is weaker, the price increases slightly, in case HUF is stronger, the price goes lower slightly.

        66 866 Ft (63 682 Ft + 5% VAT)
      • Discount 12% (cc. 8 024 Ft off)
      • Discounted price 58 842 Ft (56 040 Ft + 5% VAT)

    58 842 Ft

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    Out of print

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    Delivery time is estimated on our previous experiences. We give estimations only, because we order from outside Hungary, and the delivery time mainly depends on how quickly the publisher supplies the book. Faster or slower deliveries both happen, but we do our best to supply as quickly as possible.

    Product details:

    • Edition number 1st ed. 2018
    • Publisher Springer International Publishing
    • Date of Publication 10 December 2018
    • Number of Volumes 1 pieces, Book

    • ISBN 9783030014087
    • Binding Hardback
    • No. of pages172 pages
    • Size 235x155 mm
    • Weight 454 g
    • Language English
    • Illustrations XV, 172 p. 41 illus., 30 illus. in color. Illustrations, black & white
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    Long description:

    This volume of lecture notes briefly introduces the basic concepts needed in any computational physics course: software and hardware, programming skills, linear algebra, and differential calculus. It then presents more advanced numerical methods to tackle the quantum many-body problem: it reviews the numerical renormalization group and then focuses on tensor network methods, from basic concepts to gauge invariant ones. Finally, in the last part, the author presents some applications of tensor network methods to equilibrium and out-of-equilibrium correlated quantum matter.

    The book can be used for a graduate computational physics course. After successfully completing such a course, a student should be able to write a tensor network program and can begin to explore the physics of many-body quantum systems. The book can also serve as a reference for researchers working or starting out in the field.

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    Table of Contents:

    Introduction.- Part I: Software and Hardware.- Lesson 1: Computer for Physicists.- Lesson 2: Software for Physicists.- Part II: Crash Programming Course.- Lesson 3: Fortran.- Lesson 4: Python.- Lesson 5: Gnuplot.- Part III: Single-Body Problem.- Lesson 6: Matrix Diagonalization.- Lesson 7: Integrals.- Lesson 8: Differential Equations.- Part IV: Many-Body Problem.- Lesson 9: Monte Carlo.- Lesson 10: Renormalization Group.- Lesson 11: Tensor Networks.- Part V: Symmetries.- Lesson 12: Group Theory.- Lesson 13: Quantum Phase Transitions.- Lesson 14: Global Symmetries.- Lesson 15: Gauge Theories.

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