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Gabriel Wlazlowski @UCit4Lc7a2XMGApVfu5oE82g@youtube.com

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00:22
ASLDA: Hindrance of vortex reconnection in UFG: spin-asymmetric case P=20%, Movie 9, Visualization 2
00:22
ASLDA: Hindrance of vortex reconnection in UFG: spin-asymmetric case P=20%, Movie 9, Visualization 1
00:16
ASLDA: Vortex reconnection in unitary Fermi gas: spin-symmetric case P=0%, Movie 8, Visualization 1
00:21
ASLDA: Solitonic cascade in unitary Fermi gas: spin-symmetric case P=0%, Movie 7, Visualization 1
00:42
ASLDA: Solitonic cascade in unitary Fermi gas: spin-asymmetric case P=60%, Movie 6, Visualization 3
00:42
ASLDA: Solitonic cascade in unitary Fermi gas: spin-asymmetric case P=60%, Movie 6, Visualization 2
00:42
ASLDA: Solitonic cascade in unitary Fermi gas: spin-asymmetric case P=60%, Movie 6, Visualization 1
00:39
ASLDA: Solitonic cascade in unitary Fermi gas: spin-asymmetric case P=50%, Movie 5, Visualization 3
00:39
ASLDA: Solitonic cascade in unitary Fermi gas: spin-asymmetric case P=50%, Movie 5, Visualization 2
00:39
ASLDA: Solitonic cascade in unitary Fermi gas: spin-asymmetric case P=50%, Movie 5, Visualization 1
00:42
ASLDA: Solitonic cascade in unitary Fermi gas: spin-asymmetric case P=40%, Movie 4, Visualization 3
00:42
ASLDA: Solitonic cascade in unitary Fermi gas: spin-asymmetric case P=40%, Movie 4, Visualization 2
00:42
ASLDA: Solitonic cascade in unitary Fermi gas: spin-asymmetric case P=40%, Movie 4, Visualization 1
00:42
ASLDA: Solitonic cascade in unitary Fermi gas: spin-asymmetric case P=20%, Movie 3, Visualization 2
00:42
ASLDA: Solitonic cascade in unitary Fermi gas: spin-asymmetric case P=20%, Movie 3, Visualization 1
00:19
ASLDA: Solitonic cascade in unitary Fermi gas: spin-symmetric case P=0%, Movie 2, Visualization 1
00:17
ASLDA: Solitonic cascade in unitary Fermi gas: spin-symmetric case P=0%, Movie 1, Visualization 4
00:32
ASLDA: Solitonic cascade in unitary Fermi gas: spin-symmetric case P=0%, Movie 1,Visualization 1
00:26
90Zr+90Zr E=1.38VBass (noncentral 1)
00:19
240Pu+240Pu E=1.50VBass
00:18
240Pu+240Pu E=1.40VBass
00:15
240Pu+240Pu E=1.20VBass
00:16
240Pu+240Pu E=1.30VBass
00:15
240Pu+240Pu E=1.15VBass
00:16
240Pu+240Pu E=1.07VBass
00:16
240Pu+240Pu E=1.09VBass
00:16
240Pu+240Pu E=1.04VBass
00:24
90Zr+90Zr E=1.38VBass (noncentral 3)
00:26
90Zr+90Zr E=1.38VBass (noncentral 2)
00:34
90Zr+90Zr E=1.03VBass
00:24
90Zr+90Zr E=1.02VBass
00:28
90Zr+90Zr E=1.00VBass
00:34
90Zr+90Zr E=0.99VBass
00:20
90Zr+90Zr E=0.98VBass
00:26
90Zr+90Zr E=1.13VBass
00:45
90Zr+90Zr E=1.15VBass
00:42
90Zr+90Zr E=1.14VBass
00:24
90Zr+90Zr E=1.12VBass
00:24
90Zr+90Zr E=1.11VBass
00:28
90Zr+90Zr E=1.05VBass
00:28
90Zr+90Zr E=1.04VBass
00:13
Response of spinning gyroscope when pushed
01:07
Vortex-nucleus interaction: force per unit length, n=0.014fm^-3
01:07
Vortex-nucleus interaction: force per unit length, n=0.031fm^-3
01:07
Vortex-nucleus interaction: dynamics of unpinned configuration, n=0.014fm^-3
01:07
Vortex-nucleus interaction: dynamics of unpinned configuration, n=0.031fm^-3
00:10
Vortex-nucleus interaction: decay of pinned configuration, n=0.014fm^-3
00:10
Vortex-nucleus interaction: decay of pinned configuration, n=0.031fm^-3