Prance J R, Smith C G, Griffiths J P, Chorley S J, Anderson D, Jones G A C, Farrer I, Ritchie D A
Cavendish Laboratory, J. J. Thomson Avenue, Cambridge CB3 0HE, United Kingdom.
Phys Rev Lett. 2009 Apr 10;102(14):146602. doi: 10.1103/PhysRevLett.102.146602. Epub 2009 Apr 6.
Measurements are presented of a device designed to cool a 6 microm;{2} region of 2D electron gas using quantum dots. Electrostatic effects are found to be significant in the device, and a model that accounts for them is developed. At ambient electron temperatures above 120 mK the results are consistent with the model and the base temperature of the cooled region is estimated. At an ambient electron temperature of 280 mK, the 6 microm;{2} region is found to be cooled below 190 mK. Below 120 mK the results deviate from predictions, which is attributed to reduced electron-electron scattering rates.
本文展示了一种利用量子点冷却二维电子气中6平方微米区域的装置的测量结果。研究发现,该装置中的静电效应十分显著,并据此建立了一个考虑这些效应的模型。在环境电子温度高于120 mK时,测量结果与模型相符,并估算出了冷却区域的基温。在环境电子温度为280 mK时,发现6平方微米的区域被冷却至190 mK以下。在120 mK以下,测量结果与预测值出现偏差,这归因于电子-电子散射率的降低。