P-wave holographic superconductor/insulator phase transitions affected by dark matter sector
arXiv:1508.02869 · doi:10.1007/JHEP03(2016)215
Abstract
The holographic approach to building the p-wave superconductors results in three different models: the Maxwell-vector, the SU(2) Yang-Mills and the helical. In the probe limit approximation, we analytically examine the properties of the first two models in the theory with {\it dark matter} sector. It turns out that the effect of {\it dark matter} on the Maxwell-vector p-wave model is the same as on the s-wave superconductor studied earlier. For the non-Abelian model we study the phase transitions between p-wave holographic insulator/superconductor and metal/superconductor. Studies of marginally stable modes in the theory under consideration allow us to determine features of p-wave holographic droplet in a constant magnetic field. The dependence of the superconducting transition temperature on the coupling constant to the {\it dark matter} sector is affected by the {\it dark matter} density . For the transition temperature is a decreasing function of . The critical chemical potential for the quantum phase transition between insulator and metal depends on the chemical potential of dark matter and for is a decreasing function of .
25 pages, 3 figures, JHEP style (included), version accepted for publication in JHEP
References in corpus (23)
- Observation of an anomalous positron abundance in the cosmic radiation
- Building an AdS/CFT superconductor
- The non-gravitational interactions of dark matter in colliding galaxy clusters
- Holographic superconductivity in M-Theory
- The behaviour of dark matter associated with 4 bright cluster galaxies in the 10kpc core of Abell 3827
- Microwave Background Constraints on Mixing of Photons with Hidden Photons
- Complete Phase Diagrams for a Holographic Superconductor/Insulator System
- Gauge gravity duality for d-wave superconductors: prospects and challenges
- Analytical Studies on Holographic Insulator/Superconductor Phase Transitions
- Experimental Search for Hidden Photon CDM in the eV mass range with a Dish Antenna
- Introduction to Gauge/Gravity Duality
- Holographic insulator/superconductor phase transition with Weyl corrections
- New Experimental Limit on Photon Hidden-Sector Paraphoton Mixing
- p-wave Holographic Superconductors and five-dimensional gauged Supergravity
- Holographic p-wave superconductor models with Weyl corrections
- On search for eV hidden sector photons in Super-Kamiokande and CAST experiments
- p-wave Holographic Superconductors from Born-Infeld Black Holes
- Analytic study on backreacting holographic superconductors with dark matter sector
- d-wave Holographic Superconductor Vortex Lattice and Non-Abelian Holographic Superconductor Droplet
- Cosmic strings interacting with dark strings
- Analytic investigation of holographic phase transitions influenced by dark matter sector
- Magnetic field in holographic superconductor with dark matter sector
- Holographic model of hybrid and coexisting s-wave and p-wave Josephson junction
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