In space-fractional quantum mechanics the static-field tunneling exponent scales as I_p to the power of 1 plus 1 over alpha, accompanied by a sin(pi over alpha) factor.
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Asymmetric bell-shaped electric pulses with tuned carrier-envelope phase and envelope type enhance vacuum pair production by two to three orders of magnitude over symmetric cases.
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Static-Field Tunneling Ionization in Space-Fractional Quantum Mechanics
In space-fractional quantum mechanics the static-field tunneling exponent scales as I_p to the power of 1 plus 1 over alpha, accompanied by a sin(pi over alpha) factor.
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Carrier-envelope phase and pulse shape effects on vacuum pair production in asymmetric electric fields with bell-shaped envelopes
Asymmetric bell-shaped electric pulses with tuned carrier-envelope phase and envelope type enhance vacuum pair production by two to three orders of magnitude over symmetric cases.