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1)  spin-glass phase
自旋玻璃相
1.
The results indicate:it is affected by the values of magenetic-field and there is a spin-glass phase in low temperature.
测量了非晶态Fe77Cr13Zr10合金的磁化强度的温度关系,结果表明:这一关系受磁场大小的影响;低温下存在类自旋玻璃相
2)  spin-glass
自旋玻璃
1.
Charge order phase and reentrant spin-glass behavior in half doped Sm_(0.5)Ca_(0.5)MnO_3 manganite;
半掺杂Sm_(0.5)Ca_(0.5)MnO_3体系的电荷有序和再入型自旋玻璃行为
2.
This paper reviews the new progress in the residual entropy of glass systems and the entropy -freezing in spin-glass systems and proposes a new explanations of the existence of residual en tropy.
本文综述了有关一般玻璃系统零点剩余熵研究的新进展,同时介绍了自旋玻璃系统的熵冻结问题。
3.
With the temperature decreasing,the system undergoes a transition from paramagnetic(PM) to ferromagnetic(FM) and further to spin-glass(SG).
随温度的降低样品表现出从顺磁(PM)到铁磁(FM)及自旋玻璃态(SG)等复杂的磁相变行为。
3)  spin glass
自旋玻璃
1.
Nonequilibrium properties of Sherrington-Kirkpatric spin glass model
Sherrington-Kirkpatric自旋玻璃模型的非平衡态性质
2.
Characteristic spin glass state occurred near the 225K which is due to the competition between the ferromagnetic and antiferromagnetic properties.
此材料呈现出一种典型的自旋玻璃特性,在T=225K发生自旋冻结。
3.
Quantum Sherrington Kirkpatrick (SK) spin glass model is investigated with the help of the static replica symmetric spin glass theory.
研究了量子Sherrington-Kirkpatrick自旋玻璃模型。
4)  spin glass
自旋玻璃态
1.
These materials also exhibit intriguing physical properties such as metal-insulator transition induced by applied magnetic field or photo radiation, spin glass, charge ordering, orb.
同时,这类材料还表现出诸如磁场诱导的金属-绝缘体转变、自旋玻璃态、电荷有序、轨道有序、相分离、自旋态转变等十分丰富的物理内容,涉及到凝聚态物理的许多基本问题,一旦解决了这些问题的微观物理机制,必将对凝聚态物理的发展和完善起到巨大的推动作用。
5)  spin-glass-like
类自旋玻璃
6)  vortex glass transition
涡旋玻璃相变
1.
Universal scaling relations of the Hall resistivity and Hall angle near the vortex glass transition and the unified Hall resistivity equation
高温超导体霍尔电阻和霍尔角在涡旋玻璃相变附近的普适标度律及统一霍尔电阻方程
补充资料:自旋-自旋弛豫


自旋-自旋弛豫


  磁共振成像术语。又称T2弛豫或横向弛豫(transverse relaxation),指垂直于外磁场B0方向的磁化矢量的指数性衰减过程。磁共振成像时,对置于外磁场B0中的自旋系统施加90°射频脉冲,则自旋系统被激励,其净磁化矢量指向与外磁场B0垂直;射频脉冲终止后,被激励的质子与邻近的原子核之间发生相互作用,逐渐失去相位,净磁化矢量指向恢复与外磁场平行,该过程称自旋-自旋弛豫。自旋-自旋弛豫过程无能量交换。
  
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