Huber S D, Rüegg A
Theoretische Physik, ETH Zurich, CH-8093 Zürich, Switzerland.
Phys Rev Lett. 2009 Feb 13;102(6):065301. doi: 10.1103/PhysRevLett.102.065301. Epub 2009 Feb 9.
The experimental investigation of quantum phases in optical lattice systems provides major challenges. Recently, dynamical generation of double occupancy via modulation of the hopping amplitude t has been used to characterize the strongly correlated phase of fermionic atoms. Here, we want to validate this experimental technique with a theoretical study of the driven Hubbard model using analytic methods. We find that conclusive evidence for a Mott phase can be inferred from such a measurement, provided that sufficiently low temperatures k_{B}T<<t can be reached.
对光晶格系统中的量子相进行实验研究面临重大挑战。最近,通过调制跳跃幅度t动态生成双占据已被用于表征费米子原子的强关联相。在此,我们想用解析方法对驱动哈伯德模型进行理论研究来验证这一实验技术。我们发现,只要能达到足够低的温度(k_{B}T<<t),就可以从这种测量中推断出莫特相的确凿证据。