2 citations · 4 across the 4 of their papers we have counts for
5 papers
Simulation of atom trajectories in the original Stern-Gerlach experiment
Faraz Mostafaeipour, S. Suleyman Kahraman, Kelvin Titimbo +2
Following a comprehensive analysis of the historical literature, we model the geometry of the Stern$\unicode{x2013}$Gerlach experiment to numerically calculate the magnetic field u…
Quantum mechanical modeling of the multi-stage Stern$\unicode{x2013}$Gerlach experiment conducted by Frisch and Segrè
S. Süleyman Kahraman, Kelvin Titimbo, Zhe He +2
The multi-stage Stern$\unicode{x2013}$Gerlach experiment conducted by Frisch and Segrè includes two cascaded quantum measurements with a nonadiabatic flipper in between. The Frisch…
Numerical modeling of the multi-stage Stern$\unicode{x2013}$Gerlach experiment by Frisch and Segrè using co-quantum dynamics via the Schrödinger equation
Zhe He, Kelvin Titimbo, David C. Garrett +2
We use a theory termed co-quantum dynamics (CQD) to numerically model spin flip in the multi-stage Stern$\unicode{x2013}$Gerlach (SG) experiment conducted by R. Frisch and E. Segrè…
Numerical modeling of the multi-stage Stern$\unicode{x2013}$Gerlach experiment by Frisch and Segrè using co-quantum dynamics via the Bloch equation
Kelvin Titimbo, David C. Garrett, S. Süleyman Kahraman +2
We numerically study the spin flip in the Frisch$\unicode{x2013}$Segrè experiment, the first multi-stage Stern$\unicode{x2013}$Gerlach experiment, within the context of the novel c…
Distinguishing quantum features in classical propagation
Kelvin Titimbo, Gabriel M. Lando, Alfredo M. Ozorio de Almeida
The strictly classical propagation of an initial Wigner function, referred to as TWA or LSC-IVR, is considered to provide approximate averages, despite not being a true Wigner func…