We may earn an affiliate commission when you visit our partners.

Condensed Matter Theories

John W. Clark

Contents: Magnetisation Plateaux in Quasi-One-Dimensional Strongly Correlated Electron Systems; Shot Noise of Nanoscale Nickel Dots; Transport in a Mesoscopic Ring with a Quantum Dot: From the Coulomb Blockade Regime to the Kondo Effect; Charged Particle Bilayers: Structure and Dynamics; Formulation of Linear Scaling Methods for Electronic Structure Calculations; Magnetic Vortices in Submicron Nickel Dots and Films; Polaron Weights and Measures; Heat Transport in Superlattices; Ab Initio Calculation of the C/A Ratio of Hexagonal Cu-Zn Alloys; Adsorbed Atoms on Quantum Corrals; Properties of Thin 3He-4He Mixture Films; Diffusion Monte Carlo Calculation of Fully Polarised 3He; Quantum Critical Points in 2-D and 3-D Arrays of Ultrasmall Josephson Junctions; Gas Condensation Within a Bundle of Carbon Nanotubes -- Effects of Screening; Layered 4HE in Hectorite: A New Quasi-Two-Dimensional Environment for Quantum Liquids; Transitions from Non-Colinear to Colinear Structures in a Magnetic Multilayer Model; Excited States of 4He Droplets; Hopping Conductivity in High-Pressure Hydrogen; Microscopic Theory of the Lambda Transition in Liquid Helium; Relativistic Theory of Superconductivity; A

Save this book

Create your own learning path. Save this book to your list so you can find it easily later.
Save

Share

Help others find this book page by sharing it with your friends and followers:
Our mission

OpenCourser helps millions of learners each year. People visit us to learn workspace skills, ace their exams, and nurture their curiosity.

Our extensive catalog contains over 50,000 courses and twice as many books. Browse by search, by topic, or even by career interests. We'll match you to the right resources quickly.

Find this site helpful? Tell a friend about us.

Affiliate disclosure

We're supported by our community of learners. When you purchase or subscribe to courses and programs or purchase books, we may earn a commission from our partners.

Your purchases help us maintain our catalog and keep our servers humming without ads.

Thank you for supporting OpenCourser.

© 2016 - 2025 OpenCourser