Donner T, Ritter S, Bourdel T, Ottl A, Köhl M, Esslinger T
Institute of Quantum Electronics, Eidgenössische Technische Hochschule (ETH) Zürich, CH-8093 Zürich, Switzerland.
Science. 2007 Mar 16;315(5818):1556-8. doi: 10.1126/science.1138807.
The phase transition of Bose-Einstein condensation was studied in the critical regime, where fluctuations extend far beyond the length scale of thermal de Broglie waves. We used matter-wave interference to measure the correlation length of these critical fluctuations as a function of temperature. Observations of the diverging behavior of the correlation length above the critical temperature enabled us to determine the critical exponent of the correlation length for a trapped, weakly interacting Bose gas to be nu = 0.67 +/- 0.13. This measurement has direct implications for the understanding of second-order phase transitions.
在临界区域研究了玻色-爱因斯坦凝聚的相变,在该区域涨落延伸至远超过热德布罗意波的长度尺度。我们利用物质波干涉来测量这些临界涨落的关联长度随温度的变化。对临界温度以上关联长度发散行为的观测使我们能够确定捕获的弱相互作用玻色气体的关联长度临界指数为ν = 0.67±0.13。该测量对理解二级相变有直接影响。