The spin alignment of vector mesons produced in high energy reactions is determined by the spin-dependent fragmentation function D1LL(z,μf) that is shown to be independent of the polarization of the fragmenting quark. In this paper, we extract the spin-dependent fragmentation function D1LL(z,μf) from data on the spin alignment of K*0 in e+e− annihilation at the large electron-position collider (LEP) in two different scenarios and apply them to make predictions in pp collisions. We make detailed analysis of contributions from different subprocesses and show that the spin alignment should be quite significant also in high energy pp collisions
The first evidence of spin alignment of vector mesons (K∗0 and φ) in heavy-ion collisions at the Lar...
The first evidence of spin alignment of vector mesons (K 0 and ϕ) in heavy-ion collisions at the Lar...
The first evidence of spin alignment of vector mesons (K^{*0} and ϕ) in heavy-ion collisions at the ...
This paper covers the recent experimental development on spin alignment measurements of K∗0 and ϕ ve...
Large initial angular momentum created in non-central heavy-ion collisions could lead to spin alignm...
The first evidence of spin alignment of vector mesons (K∗0 and φ) in heavy-ion collisions at the Lar...
The first evidence of spin alignment of vector mesons (K 0 and ϕ) in heavy-ion collisions at the Lar...
The first evidence of spin alignment of vector mesons (K^{*0} and ϕ) in heavy-ion collisions at the ...
This paper covers the recent experimental development on spin alignment measurements of K∗0 and ϕ ve...
Large initial angular momentum created in non-central heavy-ion collisions could lead to spin alignm...
The first evidence of spin alignment of vector mesons (K∗0 and φ) in heavy-ion collisions at the Lar...
The first evidence of spin alignment of vector mesons (K 0 and ϕ) in heavy-ion collisions at the Lar...
The first evidence of spin alignment of vector mesons (K^{*0} and ϕ) in heavy-ion collisions at the ...