Tensor Network States and Effective Particles for Low-Dimensional Quantum Spin Systems

Specificaties
Gebonden, blz. | Engels
Springer International Publishing | 2017
ISBN13: 9783319641904
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Springer International Publishing e druk, 2017 9783319641904
Onderdeel van serie Springer Theses
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This thesis develops new techniques for simulating the low-energy behaviour of quantum spin systems in one and two dimensions. Combining these developments, it subsequently uses the formalism of tensor network states to derive an effective particle description for one- and two-dimensional spin systems that exhibit strong quantum correlations. These techniques arise from the combination of two themes in many-particle physics: (i) the concept of quasiparticles as the effective low-energy degrees of freedom in a condensed-matter system, and (ii) entanglement as the characteristic feature for describing quantum phases of matter. Whereas the former gave rise to the use of effective field theories for understanding many-particle systems, the latter led to the development of tensor network states as a description of the entanglement distribution in quantum low-energy states.

Specificaties

ISBN13:9783319641904
Taal:Engels
Bindwijze:gebonden
Uitgever:Springer International Publishing

Inhoudsopgave

<p>Introduction and Overview.- Quantum Many-Body Physics.- Effective Particles in Quantum Spin Chains: The Framework.- Effective Particles in Quantum Spin Chains: Applications.- Towards a Particle Theory in Two Dimensions.</p>
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        Tensor Network States and Effective Particles for Low-Dimensional Quantum Spin Systems