{"version":"1.0","type":"card","id":"e42e3b40-d40f-40e6-8883-c7d985022722","url":"https://stacklist.com/card/e42e3b40-d40f-40e6-8883-c7d985022722","title":"780nm Single Frequency Fiber Laser | Rubidium 780nm Laser – LiDAR Laser","source_url":"https://lidar-laser.com/products/tunable-single-frequency-fiber-laser-780nm","note":"High‑Performance 780nm Single Frequency Fiber Laser Systems. The steady wavelength and small linewidth of the rubidium 780nm laser make it perfect for quantum research, cooling, and atomic spectroscopy. Contact for a custom Quote.\n","image":{"url":"https://ucarecdn.com/0721dbfc-1e61-408c-975a-6f196d373def/","alt":"780nm Single Frequency Fiber Laser | Rubidium 780nm Laser – LiDAR Laser","width":887,"height":533},"stack":{"id":"603d14f1-d6ba-41e3-9b10-a4b537487988","title":"LiDAR Laser Industry Co., Ltd","url":"https://stacklist.com/stack/603d14f1-d6ba-41e3-9b10-a4b537487988"},"created_at":"2026-08-31T11:54:59.593Z","updated_at":null,"aco":{"summary":"Tunable Single Frequency Fiber Laser 780nm is a specialized laser system designed for rubidium atom manipulation applications, featuring fiber amplifier and frequency doubling technology with maximum output power exceeding 2W. It offers narrow linewidth, high polarization extinction ratio, excellent environmental adaptability, and supports customized solutions including frequency shifting and optical switching for quantum computing and atomic physics applications.","tags":["fiber-laser","780nm","single-frequency","quantum-computing","atomic-cooling","tunable-laser","polarization-maintaining"],"key_entities":[{"name":"Tunable Single Frequency Fiber Laser - 780nm","type":"technology","confidence":0.95},{"name":"Rubidium Atomic Cooling and Trapping","type":"concept","confidence":0.9},{"name":"Quantum Computing with Neutral Atoms","type":"concept","confidence":0.9},{"name":"Frequency Doubling Technology","type":"technology","confidence":0.85},{"name":"Atomic Clocks and Frequency Standards","type":"concept","confidence":0.85},{"name":"Polarization-Maintaining Fiber","type":"technology","confidence":0.85},{"name":"Rydberg State Excitation and Spectroscopy","type":"concept","confidence":0.8}],"classification":"reference","language":"en","confidence":0.85,"provenance":{"model":"claude-haiku-4-5","tool":"@stacklist/be@0.1.0","confidence":0.85,"timestamp":"2026-08-31T11:55:05.921Z"},"token_counts":{"approximate":592,"cl100k":552},"content_hash":"sha256:bd9594a21757aa239438cccab5628b565ba24366f767ef91568419090ec4f763","acp_version":"0.2","body_available":true,"body_tokens":592,"visibility":"public","agent_accessible":true,"status":"final"},"_links":{"self":"/api/public/card/e42e3b40-d40f-40e6-8883-c7d985022722.json","html":"https://stacklist.com/card/e42e3b40-d40f-40e6-8883-c7d985022722","md":"/api/public/card/e42e3b40-d40f-40e6-8883-c7d985022722.md","stack_json":"/api/public/stack/603d14f1-d6ba-41e3-9b10-a4b537487988.json"}}