We present a unified perspective on symmetry protected topological (SPT) phases in one dimension and address the open question of what characterizes their phase transitions. In the first part of this work, we use symmetry as a guide to map various well-known fermionic and spin SPTs to a Kitaev chain with coupling of range alpha is an element of Z. This unified picture uncovers new properties of old models, such as how the cluster state is the fixed point limit of the Affleck-Kennedy-Lieb-Tasaki state in disguise, and elucidates the connection between fermionic and bosonic phases, with the Hubbard chain interpolating between four Kitaev chains and a spin chain in the Haldane phase. In the second part, we study the topological phase transitio...
Understanding the interplay between symmetries and phases lies at the heart of characterizing states...
The study of continuous phase transitions triggered by spontaneous symmetry breaking has brought rev...
We present the correspondence between symmetry-protected topological (SPT) phases and their anomalou...
Quantum phase transitions out of a symmetry-protected topological (SPT) phase in (1 + 1) dimensions ...
The study of continuous phase transitions triggered by spontaneous symmetry breaking has brought re...
The study of continuous phase transitions triggered by spontaneous symmetry breaking has brought re...
The interplay of symmetry, topology, and many-body effects in the classification of phases of matter...
The interplay of symmetry, topology, and many-body effects in the classification of phases of matter...
The interplay of symmetry, topology, and many-body effects in the classification of phases of matter...
none6siThe interplay of symmetry, topology, and many-body effects in the classification of phases of...
We show that topology can protect exponentially localized, zero energy edge modes at critical points...
We show that topology can protect exponentially localized, zero energy edge modes at critical points...
In an earlier work [1] we developed a holographic theory for the phase transition between bosonic sy...
Effective field theory is a very useful technique for understanding quantum many body systems. We us...
The study of continuous phase transitions triggered by spontaneous symmetry breaking has brought rev...
Understanding the interplay between symmetries and phases lies at the heart of characterizing states...
The study of continuous phase transitions triggered by spontaneous symmetry breaking has brought rev...
We present the correspondence between symmetry-protected topological (SPT) phases and their anomalou...
Quantum phase transitions out of a symmetry-protected topological (SPT) phase in (1 + 1) dimensions ...
The study of continuous phase transitions triggered by spontaneous symmetry breaking has brought re...
The study of continuous phase transitions triggered by spontaneous symmetry breaking has brought re...
The interplay of symmetry, topology, and many-body effects in the classification of phases of matter...
The interplay of symmetry, topology, and many-body effects in the classification of phases of matter...
The interplay of symmetry, topology, and many-body effects in the classification of phases of matter...
none6siThe interplay of symmetry, topology, and many-body effects in the classification of phases of...
We show that topology can protect exponentially localized, zero energy edge modes at critical points...
We show that topology can protect exponentially localized, zero energy edge modes at critical points...
In an earlier work [1] we developed a holographic theory for the phase transition between bosonic sy...
Effective field theory is a very useful technique for understanding quantum many body systems. We us...
The study of continuous phase transitions triggered by spontaneous symmetry breaking has brought rev...
Understanding the interplay between symmetries and phases lies at the heart of characterizing states...
The study of continuous phase transitions triggered by spontaneous symmetry breaking has brought rev...
We present the correspondence between symmetry-protected topological (SPT) phases and their anomalou...