The near-field and far-field second harmonic (SH) responses of a metal spherical nanoparticle placed in the focal region of a highly focused beam are investigated by using the calculation model based on three-dimens...The near-field and far-field second harmonic (SH) responses of a metal spherical nanoparticle placed in the focal region of a highly focused beam are investigated by using the calculation model based on three-dimensional finite-difference time-domain (FDTD) method. The results show that off-axis backward-propagating SH response can be reinforced by tightly focusing, due to the increase of the relative magnitude of the longitudinal field component and the phase shift along the propagation direction.展开更多
金属磁微量能计(Metallic Magnetic Calorimeter,MMC)是一种具有极高能量分辨率的低温光子探测器。它通过顺磁材料磁化率在低温下随温度急剧变化的特性来实现对光子能量的精确测量。金属磁微量能计通常使用超导量子干涉器进行信号读出...金属磁微量能计(Metallic Magnetic Calorimeter,MMC)是一种具有极高能量分辨率的低温光子探测器。它通过顺磁材料磁化率在低温下随温度急剧变化的特性来实现对光子能量的精确测量。金属磁微量能计通常使用超导量子干涉器进行信号读出。研究介绍了一种用于金属磁微量能计信号读出的两级超导量子干涉器电路。初级放大器的设计采用了二阶梯度计构型,测试结果显示该设计方案有效的抑制了环境噪声的干扰。在液氦温度下,两级放大电路在磁通锁定环模式下实现了27400 V/A的跨阻增益,白噪声水平达到11.5 pA/Hz^(1/2)。展开更多
基金Project supported by the National Natural Science Foundation of China(Grant No.61378005)
文摘The near-field and far-field second harmonic (SH) responses of a metal spherical nanoparticle placed in the focal region of a highly focused beam are investigated by using the calculation model based on three-dimensional finite-difference time-domain (FDTD) method. The results show that off-axis backward-propagating SH response can be reinforced by tightly focusing, due to the increase of the relative magnitude of the longitudinal field component and the phase shift along the propagation direction.
文摘金属磁微量能计(Metallic Magnetic Calorimeter,MMC)是一种具有极高能量分辨率的低温光子探测器。它通过顺磁材料磁化率在低温下随温度急剧变化的特性来实现对光子能量的精确测量。金属磁微量能计通常使用超导量子干涉器进行信号读出。研究介绍了一种用于金属磁微量能计信号读出的两级超导量子干涉器电路。初级放大器的设计采用了二阶梯度计构型,测试结果显示该设计方案有效的抑制了环境噪声的干扰。在液氦温度下,两级放大电路在磁通锁定环模式下实现了27400 V/A的跨阻增益,白噪声水平达到11.5 pA/Hz^(1/2)。