QUANTUM PHASES OF MATTER

FIS/02 - 6 CFU - 2° Semester

Teaching Staff

LUIGI AMICO


Learning Objectives

The course will provide a general introduction to the physics of strongly correlated systems at very low temperature. The notion of quantum phase transition will be discussed. Specific examples will be analysed. A first introduction to the modern theory of quantum phase of matter will be presented.



Detailed Course Content

Phase transitions, critical points, scaling, the role of dimensionality. The concepts of phase and symmetry. Conformal invariance. Landau Theory: symmetry breaking.

The Ising model. Solidification transition. Transfer matrix formalism.

Correlation functions. The correspondence between statistical and quantum mechanics. The notion of a quantum phase transition.

Example of quantum phase transitions and their relevance for modern quantum material science.Quantum technology.

Transverse Ising Model in one-dimension: ground state, quantum critical point, duality argument, exact solution by Jordan-Wigner transformation.

The Bose-Hubbard model.Phase diagram. Physical realizations:Josephson junctions arrays, Cold atoms trapped in optical lattices.

The effects of quantum criticality at finite temperature. Thermal crossover and quantum critical region. Thermal crossover in one dimensional Ising model in trasverse field.

Beyond Landau-symmetry breaking. Topological order. Topological quantum phase transitions in two spatial dimensions. Elements of lattice gauge theories. Topological order in one spatial dimension.

Entanglement in many-body systems. Short Vs long range entanglement in extended systems. Modern classification of quantum phases of matter.



Textbook Information

S. Sachdev, “Quantum Phase Transitions” (Cambridge University press 2011).

-X.G. Wen, “Quantum Field Theory of Many-body Systems: From the Origin of Sound to an Origin of Light and Electrons”, (Oxford University press 2007).

G. Mussardo, "Il modello di Ising. Introduzione alla teoria dei campi e delle transizioni di fase", Boringheri 2010




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