论文标题
田莱缸阵列上的反射和站立波
Reflections and Standing Waves on the Tianlai Cylinder Array
论文作者
论文摘要
在21厘米的强度映射中,利用前景的光谱平滑度将其与较弱的21〜cm信号分开。但是,仪器的非平滑频率响应使该过程变得复杂。反射和驻波会在频率响应上产生调制。在这里,我们报告了天li缸阵列信号通道的带通中的驻波分析。通过将带通转换为延迟时间域的傅立叶,我们发现望远镜上产生了各种站立波。最清楚地识别出在约142 ns处的时间延迟的常规波,这是在15米饲料电缆中产生的。我们还发现,在$τ<50 \ ns $的较短延迟下,这可能是反射器和进料之间常驻波的混合物,以及4 m中间频率(如果)电缆的常沟波。我们还表明,可以通过删除反射感应的调制度来部分恢复平滑的频率响应。但是,天线上的常驻波是方向依赖性的,这对高精度校准构成了更加困难的挑战。
In 21~cm intensity mapping, the spectral smoothness of the foreground is exploited to separate it from the much weaker 21~cm signal. However, the non-smooth frequency response of the instrument complicates this process. Reflections and standing waves generate modulations on the frequency response. Here we report the analysis of the standing waves in the bandpass of the signal channels of the Tianlai Cylinder Array. By Fourier transforming the bandpass into the delay time domain, we find various standing waves generated on the telescope. A standing wave with time delay at about 142 ns is most clearly identified which is produced in the 15 meter feed cable. We also find a strong peak at a shorter delay of $τ< 50 \ns$, which may be a mix of the standing wave between the reflector and feed, and the standing wave on the 4 m intermediate frequency (IF) cable. We also show that a smoother frequency response could be partially recovered by removing the reflection-inducted modulations. However, the standing wave on the antenna is direction-dependent, which poses a more difficult challenge for high precision calibration.