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Hawking radiation is predicted to be extremely faint and is many orders of magni...

Piotr Kosek: "Hawking radiation is predicted to be extremely faint and is many orders of magnitude below the current best telescopes' detecting ability. F..." — True

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📅 28.01.2026 · Czarne dziury nie istnieją? Nowa hipoteza fizyków - Ast... · 👁️ 8

True. Hawking radiation for large astrophysical objects, such as stellar-mass black holes, is extremely faint and has a mathematically negligible effect on their mass. Calculations show that the evaporation time for a solar-ma...

"Hawking radiation is predicted to be extremely faint and is many orders of magnitude below the current best telescopes' detecting ability. For astronomical black holes, the evaporation time is prodigiously long — about 10^61 times the age of the Universe for a 30 solar mass black hole. Since the universe contains the cosmic microwave background radiation at 2.7 K, no stellar black holes can evaporate: they are colder than outer space." "Dla dużych astrofizycznych obiektów ten efekt jest matematycznie pomijalny. Obliczenia pokazują, że utrata masy przez promieniowanie Hawkinga dla obiektu o masie gwiazdy jest absurdalnie mała w porównaniu do tempa zapadania się grawitacyjnego."
🌐 (Machine-translated — original in Polish) · Original in Polishuage
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Transcript excerpt

Oryginał w języku Polskim Open on YouTube

Argument sceptyków brzmi następująco. Podczas zapadania się gwiazdy materia staje się niezwykle gorąca i gęsta. Zanim horyzont się zamknie, procesy kwantowe mogą sprawić, że gwiazda wypromieniuje swoją masę tak szybko, że horyzont nigdy nie powstanie. Gwiazda wyparuje zanim stanie się czarną dziurą. Brzmi sensownie. Problem w tym, że dla dużych astrofizycznych obiektów ten efekt jest matematycznie pomijalny. Obliczenia pokazują, że utrata masy przez promieniowanie Hawkinga dla obiektu o masie gwiazdy jest absurdalnie mała w porównaniu do tempa zapadania się grawitacyjnego. To promieniowanie Hawkinga po prostu nie nadąży. Jest to jak próba opróżnienia oceanu łyżeczką, podczas gdy dolewamy do niego wodę z rurociągu o średnicy kilometra. Grawitacja tutaj po prostu wygrywa. Matematyka jest bezlitosna. Dla typowych mask gwiazdowych parowanie nie jest w stanie powstrzymać kolapsu. Horyzont po prostu powstanie. No dobra, a

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