Team uses quasars to confirm exoplanet signal AI illustrationhow this picture was madeA research team has distinguished a planetary signal from its host star by using distant quasars as reference points. [1]
The team corrected observed image positions against the quasars, measuring a 4.4 sigma discrepancy between the candidate signal and the stellar position.
Standard planetary formation models predict planets orbit in the same direction as their host star, with aligned orbital planes. [2]Un equipo de investigación logró diferenciar la señal de un planeta de la de su estrella anfitriona utilizando cuásares distantes como puntos de referencia. [1]
El equipo corrigió las posiciones observadas de las imágenes tomando como referencia los cuásares, y midió una discrepancia de 4,4 sigma entre la señal candidata y la posición de la estrella.
Los modelos estándar de formación planetaria predicen que los planetas orbitan en la misma dirección que su estrella anfitriona, con planos orbitales alineados. [2]
Proof2 sources · 2 publishers · signed
What this stands on
The team distinguished the planetary signal from the host star by using distant quasars as reference points to correct image positions, finding a discrepancy of 4.4 sigmas between the signal and the stellar position. · Xataka MéxicoMexico
Standard planetary formation models predict planets orbit in the same direction as their host star with aligned orbital planes. · La República.pePeru
They publish from Mexico, Peru. None is an official body: that part stands on reporting, not on the underlying document or transcript.