{"type":"rich","version":"1.0","provider_name":"Transistor","provider_url":"https://transistor.fm","author_name":"LattiSpec News","title":"Quantum Computing at Room Temperature? Diamond Makes It Possible | Feat. SAXON Q","html":"<iframe width=\"100%\" height=\"180\" frameborder=\"no\" scrolling=\"no\" seamless src=\"https://share.transistor.fm/e/d2915e78\"></iframe>","width":"100%","height":180,"duration":908,"description":"Most quantum computers need extreme cooling. This one doesn’t.\nIn Part 1 of our new LattiSpec interview, Marius Grundmann joins Marty to explain how NV centers in diamond are being used to build full-stack quantum computers that operate at room temperature.\nNo massive cryogenic equipment required. 💎\nThey dive into:\nSAXON Q’s multicore architecture: How they are rethinking quantum design.\nThe AI energy crisis: How quantum computing could help curb the massive energy demands of modern data centers.\nThe material bottleneck: Why engineering better technology-grade diamond is the critical next step for scaling this technology.\nThis is a fascinating look at what could become one of the biggest future applications for synthetic diamond.\n--\nLearn more about SAXON Q\nLearn more about LattiSpec\nFollow Us on LinkedIn!\nWatch on YouTube!","thumbnail_url":"https://img.transistorcdn.com/iFwiUuMu2H7E6ZtCeBEf_s5zS299FrEvH5rbMENuKfU/rs:fill:0:0:1/w:400/h:400/q:60/mb:500000/aHR0cHM6Ly9pbWct/dXBsb2FkLXByb2R1/Y3Rpb24udHJhbnNp/c3Rvci5mbS8wOTlm/OTExNGE2NjNhODMy/NjEzMmQwZjI0ZmMy/MmIzNy5wbmc.webp","thumbnail_width":300,"thumbnail_height":300}