论文标题
Alma高频长基线运动在2017年:频段阶段在亚毫米浪潮中引用
ALMA High-frequency Long Baseline Campaign in 2017: Band-to-band Phase Referencing in Submillimeter Waves
论文作者
论文摘要
2017年,组织了一个大型毫米/亚毫米阵列(ALMA)高频长基线运动,以测试在底座(submm)波长16 km的基线的图像能力。我们使用ALMA接收器频带7、8、9和10(285-875 GHz)研究了图像质量,通过采用带对波段(B2B)相引用,其中以较低的频率跟踪相位校准器。对于B2B相引用,可以与标准带内引用相比,可以使用更紧密的相位校准器与目标。在第一步中,可以确保可以使用差分增益校准去除低频和高频频段之间的仪器相位偏移差,在该校准中肯定会在频率切换时检测到相位校准器。在下一步中,安排了比较实验,以研究B2B和带有各个相位校准器在各种分离角的带中相引用之间的图像质量。在最后一步中,我们在频段8的频段7和405 GHz的289 GHz和hl tau和Vy CMA的复杂结构源进行了长时间的基线成像测试,在频段9中〜670 GHz。B2B相引用成功地应用了B2B相引用,使我们能够实现14x11和10x8 mas的角度分辨率。在B2B相引用中,在5.4 ver之内找到低频校准器的可能性很高,足够明亮,可以使用8 s扫描长度与7.5 GHz带宽相结合。
In 2017, an Atacama Large Millimeter/submillimeter Array (ALMA) high-frequency long baseline campaign was organized to test image capabilities with baselines up to 16 km at submillimeter (submm) wavelengths. We investigated image qualities using ALMA receiver Bands 7, 8, 9, and 10 (285-875 GHz) by adopting band-to-band (B2B) phase referencing in which a phase calibrator is tracked at a lower frequency. For B2B phase referencing, it is expected that a closer phase calibrator to a target can be used, comparing to standard in-band phase referencing. In the first step, it is ensured that an instrumental phase offset difference between low- and high-frequency Bands can be removed using a differential gain calibration in which a phase calibrator is certainly detected while frequency switching. In the next step, comparative experiments are arranged to investigate the image quality between B2B and in-band phase referencing with phase calibrators at various separation angles. In the final step, we conducted long baseline imaging tests for a quasar at 289 GHz in Band 7 and 405 GHz in Band 8 and complex structure sources of HL Tau and VY CMa at ~670 GHz in Band 9. The B2B phase referencing was successfully applied, allowing us to achieve an angular resolution of 14x11 and 10x8 mas for HL Tau and VY CMa, respectively. There is a high probability of finding a low-frequency calibrator within 5.4 deg in B2B phase referencing, bright enough to use an 8 s scan length combined with a 7.5 GHz bandwidth.