论文标题

VTXO:X射线观测的虚拟望远镜

VTXO: the Virtual Telescope for X-ray Observations

论文作者

Krizmanic, John, Shah, Neerav, Harding, Alice, Calhoun, Phil, Purves, Lloyd, Webster, Cassandra, Stochaj, Steven, Rankin, Kyle, Smith, Daniel, Park, Hyeongjun, Boucheron, Laura, Kota, Krishna, Corcoran, Michael, Shrader, Chris, Naseri, Asal

论文摘要

用于X射线观测的虚拟望远镜(VTXO)将在具有1 km焦距的虚拟X射线望远镜中使用轻质相的Frensel透镜(PFL),并且具有近50毫米偏置的角度分辨率。 PFL的实验室表征已证明X射线带中的衍射限量分辨率接近,但它们需要较长的焦距才能达到这种成像质量。 VTXO是通过使用两个小萨特的精确地层飞行来形成的:一个较小的6U光学系统,该光学镜组件容纳PFL和导航信标,而较大的ESPA级检测器则包含X射线摄像机,一个带电的播放器辐射监视器,精确的星星跟踪器,以及对构造飞行的推进。基线飞行动力学使用高度涡旋的超同步地静力转移轨道,以使惯性形成形成并保持在90,000公里的上方,在32.5小时的轨道中,持续10个小时,近一年的任务寿命。编队飞行的指导,导航和控制(GN&C)使用标准的立方体航空套件,精密星形跟踪器,OpticsSat上的成像信标和一个无线电范围系统,也可以用作卫生间通信链接。 VTXO的精细角分辨率使测量环境几乎一个数量级接近明亮紧凑型X射线源的中央引擎与当前的最新状态相比。这种X射线成像能力可以研究距离中心物体(例如Cyg X-3和GX 5-1)的粉尘散射的影响,以搜索X射线X-射线Novae中紧凑型物体的搜索,例如CYG X-1和GRS 1915+105,以及在crabar pulsar windebula中搜索结构的搜索结构。 VTXO开发被支持为2018年NASA天体物理学Smallsat研究(AS3)任务之一。

The Virtual Telescope for X-ray Observations (VTXO) will use lightweight Phase Frensel Lenses (PFLs) in a virtual X-ray telescope with 1 km focal length and with nearly 50 milli-arcsecond angular resolution. Laboratory characterization of PFLs have demonstrated near diffraction-limited angular resolution in the X-ray band, but they require long focal lengths to achieve this quality of imaging. VTXO is formed by using precision formation flying of two SmallSats: a smaller, 6U OpticsSat that houses the PFLs and navigation beacons while a larger, ESPA-class DetectorSat contains an X-ray camera, a charged-particle radiation monitor, a precision star tracker, and the propulsion for the formation flying. The baseline flight dynamics uses a highly-elliptical supersynchronous geostationary transfer orbit to allow the inertial formation to form and hold around the 90,000 km apogee for 10 hours of the 32.5-hour orbit with nearly a year mission lifetime. The guidance, navigation, and control (GN&C) for the formation flying uses standard CubeSat avionics packages, a precision star tracker, imaging beacons on the OpticsSat, and a radio ranging system that also serves as an inter-satellite communication link. VTXO's fine angular resolution enables measuring the environments nearly an order of magnitude closer to the central engines of bright compact X-ray sources compared to the current state of the art. This X-ray imaging capability allows for the study of the effects of dust scattering nearer to the central objects such as Cyg X-3 and GX 5-1, for the search for jet structure nearer to the compact object in X-ray novae such as Cyg X-1 and GRS 1915+105, and for the search for structure in the termination shock of in the Crab pulsar wind nebula. The VTXO development was supported as one of the selected 2018 NASA Astrophysics SmallSat Study (AS3) missions.

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