论文标题
低收缩和电阻率硅铝复合材料的材料特性,用于低温探测器
Material properties of a low contraction and resistivity silicon-aluminum composite for cryogenic detectors
论文作者
论文摘要
我们报告了低获得硅 - 铝复合材料的低温特性,即日本精细陶瓷SA001,用作低温硅设备的包装结构。 SA001是一种硅 - 铝合作材料(乘积硅75%),其热膨胀系数较低($ \ sim $ 1/3)。 SA001的超导过渡温度的测量为1.18 K,与纯铝一致,因此可作为超导磁性屏蔽材料提供。 SA001的剩余电阻率为0.065 $ \ MATHRM {μΩm} $,其低于等效的硅(铝合金复合材料)。沉浸在液氮中的SA001的测量热收缩为$ \ frac {l_ {293 \ Mathrm {k}}} - l_ {77 \ Mathrm {k}}}} {l_硅和铝的收缩。 SA001的可加工性也通过证明的锥形饲料式阵列进行了证实,其壁厚为100 $ \ mathrm {μm} $。这些特性适用于包装应用程序,用于大型超导检测器设备。
We report on the cryogenic properties of a low-contraction silicon-aluminum composite, namely Japan Fine Ceramics SA001, to use as a packaging structure for cryogenic silicon devices. SA001 is a silicon--aluminum composite material (75% silicon by volume) and has a low thermal expansion coefficient ($\sim$1/3 that of aluminum). The superconducting transition temperature of SA001 is measured to be 1.18 K, which is in agreement with that of pure aluminum, and is thus available as a superconducting magnetic shield material. The residual resistivity of SA001 is 0.065 $\mathrm{μΩm}$, which is considerably lower than an equivalent silicon--aluminum composite material. The measured thermal contraction of SA001 immersed in liquid nitrogen is $\frac{L_{293\mathrm{K}}-L_{77\mathrm{K}}}{L_{293\mathrm{K}}}=0.12$%, which is consistent with the expected rate obtained from the volume-weighted mean of the contractions of silicon and aluminum. The machinability of SA001 is also confirmed with a demonstrated fabrication of a conical feedhorn array, with a wall thickness of 100 $\mathrm{μm}$. These properties are suitable for packaging applications for large-format superconducting detector devices.