The shipment of the LSST Camera from SLAC National Lab in California to Rubin Observatory in Chile was completed successfully in spring 2024 after extensive road and flight testing of the Camera’s shipping container. Prior to final shipment, two local driving tests and one full test shipment from California to Chile were completed with a mass simulator to validate the performance of the wire rope isolator system by collecting data on acceleration events and vibration modes. This paper presents the results from the second test drive as well as the final shipment of the LSST Camera and associated hardware to the observatory.
The Dutch Rubin Enhanced Atmospheric Monitor – DREAM – brings high-resolution, real-time information on all-sky transparency and cloud coverage to the Vera C. Rubin Observatory. Leveraging the MASCARA legacy, DREAM employs five wide-field cameras, pointing upward and in the four cardinal directions. It precisely measures the brightness of all bright stars (V < 8.4) with a cadence of 6.4 seconds. To disentangle instrumental and stellar brightness variations from transmission fluctuations, a comprehensive spatial-temporal calibration is applied. The resulting transmission variations are calibrated and processed to generate an all-sky image of transparency, providing the actual cloud cover at an approximate cadence of 30 seconds. DREAM also produces calibrated light curves for stars brighter than magnitude 8.4, extending the temporal coverage of the MASCARA southern hemisphere survey. Integrated and tested at Leiden Observatory in 2023, DREAM was shipped in November of the same year and installed in close proximity to the Vera C. Rubin Observatory. In its initial phase, DREAM supplies cloud coverage and transparency data to the Auxiliary Telescope. Once the LSST Camera of the Vera C. Rubin Observatory becomes operational, DREAM will play a crucial role in optimizing the survey strategy by providing input to the scheduler, particularly in non-photometric conditions.
Once assembly has been completed, the Rubin Observatory LSST Camera must be safely transported from SLAC National Accelerator Laboratory (SLAC) in California to the observatory facility in Chile. In order to preemptively verify the procedures and hardware involved in this critical shipment, a test shipment was performed with a fully representative Camera mass simulator. Despite several logistical complications, the Camera Shipping Container performed near-flawlessly on all legs of the journey from SLAC to the summit. Results from this preliminary shipment have guided further improvements to both hardware and the shipping process that will be implemented prior to the final Camera shipment.
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