<--- Back to Details
First PageDocument Content
Physics / Quantum mechanics / Crystallography / Fermions / Quantum field theory / Brillouin zone / Electronic band structure / Tilman Esslinger / Optical lattice / Dirac fermion
Date: 2012-07-31 16:17:23
Physics
Quantum mechanics
Crystallography
Fermions
Quantum field theory
Brillouin zone
Electronic band structure
Tilman Esslinger
Optical lattice
Dirac fermion

Engineering Dirac points with ultracold fermions in a tunable optical lattice Daniel Greif1,∗ , Leticia Tarruell1,2 , Thomas Uehlinger1 , Gregor Jotzu1 and Tilman Esslinger1 1. Institute for Quantum Electronics, ETH Zu

Add to Reading List

Source URL: www-lpl.univ-paris13.fr

Download Document from Source Website

File Size: 52,36 KB

Share Document on Facebook

Similar Documents

Creation and dynamics of remote spin-entangled pairs in the expansion of strongly correlated fermions in an optical lattice Stefan Keßler1,4 , Ian P McCulloch2 and Florian Marquardt1,3 1 Institute for Theoretical Physic

Creation and dynamics of remote spin-entangled pairs in the expansion of strongly correlated fermions in an optical lattice Stefan Keßler1,4 , Ian P McCulloch2 and Florian Marquardt1,3 1 Institute for Theoretical Physic

DocID: 1vkss - View Document

東大・香取研究室  Katori Group (Univ. of Tokyo) 高精度・光格子時計の実現と物理探索 Development of highly accurate optical lattice clocks and a quest for related physics

東大・香取研究室 Katori Group (Univ. of Tokyo) 高精度・光格子時計の実現と物理探索 Development of highly accurate optical lattice clocks and a quest for related physics

DocID: 1uZJW - View Document

复旦大学物理系物质科学报告 Physics Department Colloquium Novel phenomena of ultracold atoms in an optical super-lattice Prof. Yoshiro Takahashi Kyoto University, Kyoto, Japan

复旦大学物理系物质科学报告 Physics Department Colloquium Novel phenomena of ultracold atoms in an optical super-lattice Prof. Yoshiro Takahashi Kyoto University, Kyoto, Japan

DocID: 1tvNW - View Document

Emerging technologies / Nanomaterials / Chemistry / Matter / Graphene / Monolayers / Materials science / Bilayer graphene / Potential applications of graphene / Plasmon / Supercapacitor / Graphene applications as optical lenses

The unique mechanical and electronic properties of graphene, a one-atom-thick sheet of carbon atoms arranged in a honeycomb lattice, make it a promising material for applications in a number of new technologies including

DocID: 1rj72 - View Document

Researcher Mobility Grant (RMG) APPLICATIONS ARE INVITED – Researcher in optical atomic clocks 2 RESEARCH: The RMG-Researcher may propose any activities that complement and add scientific value to the related JRP, whic

Researcher Mobility Grant (RMG) APPLICATIONS ARE INVITED – Researcher in optical atomic clocks 2 RESEARCH: The RMG-Researcher may propose any activities that complement and add scientific value to the related JRP, whic

DocID: 1rai5 - View Document