The next few weeks of info will hopefully show the importance of Neutrinos.
[Submitted on 19 May 2025]
Cluster optical depth and pairwise velocity estimation using machine learning
Yulin Gong, Rachel Bean
https://arxiv.org/abs/2505.12720
Are we wasting our research on a particle that can hardly be observed?
General Relativity and Quantum Cosmology
[Submitted on 18 May 2025]
The role of non-metricity on neutrino behavior in bumblebee gravity
Yuxuan Shi, A. A. Araújo Filho
Anton is sharing his knowledge.
https://www.google.com/gasearch?q=neutrino&source=sh/x/gs/m2/5#fpstate=ive&vld=cid:d1de8af9,vid:TliQumwzu-c,st:0
https://www.google.com/gasearch?q=neutrino&source=sh/x/gs/m2/5#fpstate=ive&vld=cid:d1de8af9,vid:TliQumwzu-c,st:0
If it is so hard to see, why even research Neutrinos?
Submitted on 16 May 2025]
Flavor Equilibration of Supernova Neutrinos: Exploring the Dynamics of Slow Modes
Ian Padilla-Gay, Heng-Hao Chen, Sajad Abbar, Meng-Ru Wu, Zewei Xiong
Whoever has read the image has made a mistake. Those galaxies are fully formed. Meaning it would be impossible for those galaxies to have been formed in 280 million years.
For some reason they are trying to fit the narrative to the BBT.
Condensate having an Axion Gluon Core may mimic properties of a Black hole and expel jets.
In this case, the jets are over 64,000 l/yrseach arm.
https://share.google/pVYbNDzDNTuR41Nxu
Both Axion and Photon are two particles that can be the Dark Horse.
[Submitted on 26 May 2025]
Classical Analysis of Noncoherent Dark Matter to Photon Conversions in a Resonant Cavity
Puxian Wei, Ruifeng Zheng, Qiaoli Yang
https://arxiv.org/abs/2505.20044
Dark matter is that matter that cannot be defined.
So the research is on, to find AXIONS.
[Submitted on 22 May 2025]
Broadband Search for Axion Dark Matter via Shift Current
Dan Kondo, Takahiro Morimoto, Genta Osaki, Thanaporn Sichanugrist
Dipolar Properties.
This property is part and parcel of every condensate, found in Stars and so called Black Holes(condensates)
https://arxiv.org/abs/2505.08183