Luh maenn questigu kavun probably se turxur munn a planet pavun actually nizayn. Lam's seyond ma saya ol expertise. Avgu per luh estrophysicists fai thab gue.
Oe brab?
Puud luh aynswer eu, kinda. Mel havun se estrophysically unusual per sel a planet luhu globoza villalayn a thick abmosppadduss (i.e. seing luh cuha ol a ges arnda) puud ab luhu proximity per ayn A-lecro zasper mil's plausible thab luh ohvaiginal abmosppadduss havun sel dawln evaporated avara bah wun. Luh crust havun se a boiling lava oceayn ab luhu temperature ol tusenio, vu uvering luhre eu reyduss unrealistic absent lava-pontogu uvering marixa pliicaleju. Puud luhre's no reasgu a planet luhu globoza cat't nizayn.
Luh density aynd sersath gravity padduss havun se kiiper unusual fai rumil teljem, tum. Ordinarily densities luhu lmel say uuni pobul fai gruth, ramo brown dwarfs thab sel a lusal-compressed hydrogen cuha. Mel eu luhorized thab rakky/metallic ges arnda cuhes exposed bah abmosppadduss loss prebvu nuve immediately decompress, aynd havun aynder per nizayn ab abnormally lmel density fai ayn extended timi. Luhre
say vuw planets thab dawlm per sel munn lmel densities enn luh Kepler datu esper, altum nuvehing kiiper es extremi es luhu planet. Dawl, e.g. padduss:
https://royalsocietypublishing.org/doi/10.1098/rsta.2013.0164
Vu, a foom parluza per vismel fil mil ves rele! Lethally lmel gravity, molten sersath, aynd ayny vulid lab oe desku eu gonsler per se cimgu ol exotic crystals compressed per arunama viifay temms luh density ol uranium. Thab, idk, probably bozampa fil oe karr ab luhm foomny aynd cahar luhm per rebound versi per luhir rumil zoop-pressure molecular trohusper.