1 / 6

Observing Operations Concept Document

Observing Operations Concept Document. Elizabeth McGrath NGAO PD Team Meeting #6 March 19, 2009. Document Overview. “This document should define an observing operations conceptual design that meets the SRD requirements in a manner that maximizes the scientific productivity.”

morey
Download Presentation

Observing Operations Concept Document

An Image/Link below is provided (as is) to download presentation Download Policy: Content on the Website is provided to you AS IS for your information and personal use and may not be sold / licensed / shared on other websites without getting consent from its author. Content is provided to you AS IS for your information and personal use only. Download presentation by click this link. While downloading, if for some reason you are not able to download a presentation, the publisher may have deleted the file from their server. During download, if you can't get a presentation, the file might be deleted by the publisher.

E N D

Presentation Transcript


  1. Observing Operations Concept Document Elizabeth McGrath NGAO PD Team Meeting #6 March 19, 2009

  2. Document Overview • “This document should define an observing operations conceptual design that meets the SRD requirements in a manner that maximizes the scientific productivity.” • Scope and applicability: • “The OOCD describes how the features and functions of the design described in the SDM will be used to carry out the observations described in the science cases.” • Calibration of the AO system will be covered in a separate AO Calibration Document. • NGAO configurations will be covered in a separate Sequencers Definition Document.

  3. Document Overview (continued) • OOCD has been evolving as B2C design has evolved • A number of science performance simulation tools have been or are being developed in support of the OOCD: • Observing Efficiency Calculator (D. LeMignant) • Throughput and Emissivity Budget (A. Bouchez, D. Gavel) • Imaging Simulation Tool (F. Marchis) • IFU Sensitivity Simulation Tool (D. Law) • IFU Radial Velocity Sensitivity Simulation Tool (D. Law?) • Photometric and Astrometric Catalog (DENIS, 2MASS, LSST, PanStarrs) • Ephemeris Calculator (SKYBOT2 in Paris, web-based)

  4. Current Status • Pre-observing, Observing, and Post-observing tasks have been identified and documented for most of the key science drivers: • Galaxy Assembly IFU and imaging cases • Nearby AGNs IFU case • Exoplanets imaging case • Minor Planet Multiplicity imaging case • Galactic center (both imaging for astrometry, and IFU for radial velocities) needs work. • Rough draft for imaging based on the other science cases • Plan to ask A. Ghez to look it over and modify observing tasks to reflect how they actually perform their observations

  5. Remaining Action Items Before Release 1 • Finish Key Science Driver observing scenarios • Finish NIR Imager observation of Galaxies • Ask Ghez to review astrometry section & who should write GC RV section + minimum/goal IFU size • Imaging simulation tool • Check integration time & sampling for planets around low mass stars using Marchis’ tool & Sean’s detector numbers • Make this tool available on Wiki • Interferometer • Insert and update science requirements for interferometer from KAON 456 (p61 Table 30) in consultation with Sam Ragland

  6. Remaining Action Items Before Release 1 (continued) • Daytime Ops • Interact with Campbell to flesh out daytime ops • Section on Use Cases needs a lot of work • With the exception of the AO acquisition use case, this section has not yet been started • Review observing tasks for various science cases and clean up notes & comments in the margin of the document • Need to define a path forward for establishing PSF metrics & requirements

More Related