It's also easy to forget the brown-dwarf-hot body inside the Moon (and the star-hot one beneath our feet). Thanks to the rock insulators between us and them, and our universal heat sink. A disassembled Moon exposing mantle material... even with T^4 blackbody energy scaling, a bolide rain a year later very won't be a problem for humans. Comparing lunar mantle with Sun, say 6x cooler, 390x closer, and say <10x angular smaller - 390^2 beats 6^4, leaving what, a new 100x "Sun"?
The ChatGPT looks surprisingly ok. It struggled where textbooks and such are less than wonderful. So it raises the irrelevant Sun's core, and says "The Sun's energy output is vastly greater due to nuclear fusion reactions, emitting a massive amount of radiation across the electromagnetic spectrum. The Moon, lacking such reactions, emits no comparable energy.", perhaps reflecting the textbook "Sun shines because fusion" vs "Sun glows because hot, and hot things glow (with color and intensity proportional to temperature^4), and fusion is why it's still hot billions of years after forming". Though in a way it's true - "The Moon lacking such reactions, and being small, has cooled off and greatly dimmed since its last big formation impact". :)
The "Brown dwarfs typically range between about 1,000 and 2,500 degrees Celsius at their surface, far hotter than the Moon's mantle." seems inconsistent with [1].
Thanks for the check!
[1] graph: https://media.springernature.com/lw685/springer-static/image... source: Fig 2 on page 9 of https://hal.science/hal-02863845/document [PDF]