We study a quantum phase transition between a phase which is topologically ordered and one which is not. We focus on a spin model, an extension of the toric code, for which we obtain the exact ground state for all values of the coupling constant that takes the system across the phase transition. We compute the entanglement and the topological entropy of the system as a function of this coupling constant and show that the topological entropy remains constant all the way up to the critical point and jumps to zero beyond it. Despite the jump in the topological entropy, the transition is second order as detected via local observables
2012-02-08This dissertation puts forward the concept of fidelity as a way to understand and characte...
We present an analytical study of the quantum phase transition between the topologically ordered tor...
The interplay of the constituents of interacting many-body systems may reveal emergent properties on...
We study a quantum phase transition between a phase which is topologically ordered and one which is ...
We study a quantum phase transition between a phase which is topologically ordered and one which is ...
We study a quantum phase transition between a phase which is topologically ordered and one which is ...
We study a quantum phase transition between a phase which is topologically ordered and one which is ...
We study a quantum phase transition between a phase which is topologically ordered and one which is ...
We study a quantum phase transition between a phase which is topologically ordered and one which is ...
We study a quantum phase transition between a phase which is topologically ordered and one which is ...
We present a numerical study of a quantum phase transition from a spin-polarized to a topologically ...
We present a numerical study of a quantum phase transition from a spin-polarized to a topologically ...
We present a numerical study of a quantum phase transition from a spin-polarized to a topologically ...
We study quantum phase transitions between competing orders in one-dimensional spin systems. We focu...
In this chapter we discuss aspects of the quantum critical behavior that occurs at a quantum phase t...
2012-02-08This dissertation puts forward the concept of fidelity as a way to understand and characte...
We present an analytical study of the quantum phase transition between the topologically ordered tor...
The interplay of the constituents of interacting many-body systems may reveal emergent properties on...
We study a quantum phase transition between a phase which is topologically ordered and one which is ...
We study a quantum phase transition between a phase which is topologically ordered and one which is ...
We study a quantum phase transition between a phase which is topologically ordered and one which is ...
We study a quantum phase transition between a phase which is topologically ordered and one which is ...
We study a quantum phase transition between a phase which is topologically ordered and one which is ...
We study a quantum phase transition between a phase which is topologically ordered and one which is ...
We study a quantum phase transition between a phase which is topologically ordered and one which is ...
We present a numerical study of a quantum phase transition from a spin-polarized to a topologically ...
We present a numerical study of a quantum phase transition from a spin-polarized to a topologically ...
We present a numerical study of a quantum phase transition from a spin-polarized to a topologically ...
We study quantum phase transitions between competing orders in one-dimensional spin systems. We focu...
In this chapter we discuss aspects of the quantum critical behavior that occurs at a quantum phase t...
2012-02-08This dissertation puts forward the concept of fidelity as a way to understand and characte...
We present an analytical study of the quantum phase transition between the topologically ordered tor...
The interplay of the constituents of interacting many-body systems may reveal emergent properties on...