Speaker
            Mr
    Mehrdad Phoroutan-Mehr
        
            (University of California, Riverside (UCR))
        
    Description
Our research focuses on studying the heating mechanism of neutron stars through the capture of inelastic dark matter. Due to the high density of neutron stars, infalling dark matter particles are accelerated to relativistic speeds. To analyze the scattering between ultra-relativistic targets in the neutron star and quasi-relativistic infalling dark matter, we employ relativistic kinematics. This approach enables us to impose strong constraints that were previously unattainable through direct detection and collider searches. Furthermore, we derive an analytic equation for the maximum mass splitting between two species of dark matter
Author
        
            
                
                        Mr
                    
                
                    
                        Mehrdad Phoroutan-Mehr
                    
                
                
                        (University of California, Riverside (UCR))
                    
            
        
    
        Co-authors
        
            
                
                        Mr
                    
                
                    
                        Aniket Joglekar
                    
                
                
                        (Indian Institute of Technology Tirupati)
                    
            
        
            
                
                        Mr
                    
                
                    
                        Gerardo Alvarez
                    
                
                
                        (University of California, Riverside (UCR))
                    
            
        
            
                
                        Mr
                    
                
                    
                        Hai-Bo Yu
                    
                
                
                        (University of California, Riverside (UCR))
                    
            
        
    
        