Rubin Observatory's first LSST Camera release: 500k galaxies in the COSMOS field

原始链接: https://rubinobservatory.org/news/rubin-new-window-cosmos-field

维拉·鲁宾天文台(Vera C. Rubin Observatory)发布了一张由其 32 亿像素 LSST 相机拍摄的宇宙深空图像,展示了备受关注的 COSMOS 天区。通过叠加数百次观测数据,该图像呈现了超过五十万个星系,在不受银河系尘埃遮挡的情况下,清晰地展现了遥远的宇宙。 此次发布是“早期数据预览 2”(EDP2)的一部分,涵盖了南半球 3,000 平方度的天空。由于 COSMOS 天区在过去几十年里已被其他天文台广泛测绘,它成为了科学家验证数据和测试新工具的重要基准。 鲁宾天文台的独特之处在于其结合了大视场覆盖与重复观测的能力,使天文学家能够创建宇宙的“电影式”记录。在未来十年里,时空遗产巡天(LSST)将持续深入这一观测,帮助研究人员追踪星系随时间的变化,并识别超新星等瞬态事件。此次发布标志着天文学一个变革时代的开端,为即将到来的十年巡天任务提供了强大的科学基础。

```Hacker News最新 | 过往 | 评论 | 提问 | 展示 | 招聘 | 提交登录鲁宾天文台首批 LSST 相机数据发布:COSMOS 区域中的 50 万个星系 (rubinobservatory.org)9 分,由 MarcoDewey 于 49 分钟前发布 | 隐藏 | 过往 | 收藏 | 讨论 帮助 考虑申请 YC 2026 年秋季批次!申请截止日期为 7 月 27 日。 准则 | 常见问题 | 列表 | API | 安全 | 法律 | 申请 YC | 联系 搜索:```
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原文

Packed into this single image from Rubin Observatory are many different kinds of galaxies: spirals with delicate arms, smooth elliptical galaxies, distorted merging galaxies, and faint red galaxies from the distant Universe. Only a relatively small number of bright stars from our own Milky Way appear in the foreground, leaving an unusually clear view of galaxies stretching far into the distance.

Rubin Observatory is jointly funded by the U.S. National Science Foundation (NSF) and the U.S. Department of Energy's Office of Science (DOE/SC).

This image was captured with Rubin’s 3.2-gigapixel LSST Camera — the largest digital camera in the world, mounted on the 8.4-meter Simonyi Survey Telescope. It features the well-known and well-studied region of sky known as the COSMOS field. It was created by stacking hundreds of individual observations and contains more than half a million galaxies and more than 50,000 stars.

The COSMOS field is especially valuable to astronomers because it looks away from the crowded plane of our Milky Way. With fewer nearby stars and clouds of dust blocking the view, telescopes can see enormous numbers of distant galaxies, many so far away that their light has traveled for billions of years before reaching Earth. Looking deeper into space also means looking farther back in time, allowing scientists to study galaxies at many different stages in the history of the Universe.

Astronomers have studied COSMOS for more than two decades. Beginning with observations by the Hubble Space Telescope in 2003, researchers around the world have pointed many of the world’s leading telescopes at this same area, observing it in wavelengths ranging from radio waves to X-rays. Because the field has been observed so extensively, it serves as an important reference point for testing new data, comparing measurements, and combining information from many observatories.

Rubin now brings something new to this familiar field: a combination of depth, wide-field coverage, and repeated observations. By imaging COSMOS again and again with the LSST Camera, Rubin will complement earlier observations and add a dynamic view of the field. This perspective will help astronomers study not only what distant galaxies look like, but also how the sky changes over time.

Because of its scientific value, the COSMOS field is among the regions that will be observed more frequently than most areas included in the Legacy Survey of Space and Time (LSST) — Rubin’s ten-year survey aimed at creating the most comprehensive, cinematic record of the Universe in history. With added observations, Rubin will create an even deeper view, revealing fainter galaxies and finer details than can be seen in this first image.

This image is being released today to mark the occasion of Rubin’s Early Data Preview 2, or EDP2 — the first phase of Rubin’s Data Preview 2 release. EDP2 is Rubin’s first data preview based on observations from the LSST Camera [1]. It combines Rubin’s science validation observations collected between April 2025 and January 2026. It provides the Rubin science community with a deep co-added (stacked) image covering 3000 square degrees of night sky, which is around one-sixth of the entire visible Southern Hemisphere sky.

“The COSMOS deep image is just the beginning for Rubin in this region. Repeated visits to the field over the next few years will demonstrate the power of our survey design for discovery by providing our science community with a huge number of transient and variable objects like supernovae and other explosive transients for follow-up and detailed study,” says Bob Blum, Director of Rubin Observatory at NSF NOIRLab.

While EDP2 is not a release of data from the full LSST, which has only recently begun, it is a scientifically valuable data release in and of itself. The data preview gives scientists a rich look at the Southern Hemisphere sky, while allowing the Rubin science community to test tools, validate data products, and prepare for the decade-long survey ahead. Notably, EDP2 includes the COSMOS field, as well as the region of sky captured in Rubin’s Ocean of Stars image, which was released to celebrate the beginning of the LSST.

“The COSMOS field is a very important one for LSST science,” says Phil Marshall, Deputy Director of Rubin Observatory at SLAC. “Its wealth of prior observations, and its repeated targeting both during commissioning and as one of the LSST’s deep fields, will make it very valuable as a testing ground for scientists as they get ready to take on the survey data.”

With this new view of COSMOS, Rubin offers an early glimpse of the science to come: an extraordinarily deep and wide view of the Universe, revealing both the vast population of distant galaxies and the changing sky above Earth. Visit the Rubin Skyviewer app to explore this field in more detail.

Bob Blum adds: “As we celebrate the start of science with Rubin Observatory, our thoughts are with our staff and the community of Chile impacted by the recent devastating storms in the region of Coquimbo and beyond. Our priority is to ensure the well-being of our staff in the region and support the community where we live and work. This image marking the start of LSST science is dedicated to the people of the region of Coquimbo and is a small token of our gratitude for their decades of support for astronomy and the AURA Observatories in Chile.”

The second phase of EDP2, expected in the October–December 2026 timeframe, will add products derived from individual images. This includes the processed visit images from individual observations, difference images that show only detected changes, and the template images, which are compared to the individual visit images to produce the difference images.

Access to EDP2 is available right now to researchers in the U.S. and Chile, as well as authorized international Rubin data-rights holders. In keeping with Rubin Observatory’s data-access policy, the data products will be made openly available to the public after a two-year proprietary period.

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