论文标题
Yebes 40 m射电望远镜和7毫米的宽带纳米孔接收器,3毫米用于线条调查
Yebes 40 m radio telescope and the broad band NANOCOSMOS receivers at 7 mm and 3 mm for line surveys
论文作者
论文摘要
Yebes 40 \,M射电望远镜是Yebes观测站的主要和最大观测器,它专门用于较长的基线干涉率(VLBI)和自2010年以来的单盘观测。它一直在涵盖2 \,GHz和90 \ ghz之间的频率频段,在不连续和范围内的范围内(范围内的范围),这是不良范围的范围,即Even,Even,Even,Even,Even,Even,Even,Even,Even(Even)(EVL)(EVL)(EVL)(EVL)(evl)(EVL)(evl)(evl)(EVL)(EVL)(evl)(evl)(EVL)(evl)(EVL)(evl)(evl)的范围(EVL)(evl)(evl)的频率(全球毫米VLBI阵列(GMVA)。 Nanocosmos项目是欧盟资助的协同赠款,开辟了增加瞬时频率覆盖范围的可能性,以观察许多分子过渡,并在单盘模式下进行单个隧道。这减少了观察时间,并最大程度地提高了望远镜的输出。我们介绍了最近安装的31.5-50 GHz(Q频段)和72-90.5 GHz(W频段)接收器的技术规格以及在这些频率范围内的望远镜的主要特征。我们已经观察到IRC+10216,CRL 2688和CRL 618具有丰富的分子化学,以证明新仪器在单盘模式下进行光谱观测的能力。结果表明Q波段中望远镜的敏感性很高。 IRC+10126的光谱提供了该频段中此源以前从未见过的信号与噪声比。另一方面,W频段中通过连续通量向CRL \ \,618归一化的光谱表明,40 〜M射电望远镜与IRAM 30〜M射电望远镜中的射频产生可比的结果,尽管灵敏度较小。新的接收器实现了纳米菌的主要目标之一,并开放了以前所未有的灵敏度研究不同天体物理媒体的谱系的可能性。
Yebes 40\,m radio telescope is the main and largest observing instrument at Yebes Observatory and it is devoted to Very Long Baseline Interferometry (VLBI) and single dish observations since 2010. It has been covering frequency bands between 2\,GHz and 90\,GHz in discontinuous and narrow windows in most of the cases, to match the current needs of the European VLBI Network (EVN) and the Global Millimeter VLBI Array (GMVA). Nanocosmos project, a European Union funded synergy grant, opened the possibility to increase the instantaneous frequency coverage to observe many molecular transitions with single tunnings in single dish mode. This reduces the observing time and maximises the output from the telescope. We present the technical specifications of the recently installed 31.5-50 GHz (Q band) and 72-90.5 GHz (W band) receivers along with the main characteristics of the telescope at these frequency ranges. We have observed IRC+10216, CRL 2688 and CRL 618, which harbour a rich molecular chemistry, to demonstrate the capabilities of the new instrumentation for spectral observations in single dish mode. The results show the high sensitivity of the telescope in the Q band. The spectrum of IRC+10126 offers a signal to noise ratio never seen before for this source in this band. On the other hand, the spectrum normalised by the continuum flux towards CRL\,618 in the W band demonstrates that the 40~m radio telescope produces comparable results to those from the IRAM 30~m radio telescope, although with a smaller sensitivity. The new receivers fulfil one of the main goals of Nanocosmos and open the possibility to study the spectrum of different astrophysical media with unprecedented sensitivity.