2016
DOI: 10.1088/1674-1056/25/6/063201
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Photoionization microscopy of Rydberg hydrogen atom in a non-uniform electrical field

Abstract: In this paper, we investigate the photoionization microscopy of the Rydberg hydrogen atom in a gradient electric field for the first time. The observed oscillatory patterns in the photoionization microscopy are explained within the framework of the semiclassical theory, which can be considered as a manifestation of interference between various electron trajectories arriving at a given point on the detector plane. In contrast with the photoionization microscopy in the uniform electric field, the trajectories of… Show more

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Cited by 3 publications
(3 citation statements)
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“…This Hamiltonian defines a dynamical system with two degrees of freedom, which depends on three parameters, F 0 , α, and the energy E=H. Since this Hamiltonian shows an important scaling property [54], we can scale the coordinates r z , , ( ) momentum r p p , , In such a way, the Hamiltonian becomes:…”
Section: Theoretical Model and Methodsmentioning
confidence: 99%
“…This Hamiltonian defines a dynamical system with two degrees of freedom, which depends on three parameters, F 0 , α, and the energy E=H. Since this Hamiltonian shows an important scaling property [54], we can scale the coordinates r z , , ( ) momentum r p p , , In such a way, the Hamiltonian becomes:…”
Section: Theoretical Model and Methodsmentioning
confidence: 99%
“…[2,3] Since then, great progress has been made in NMR. Now, it is widely used in many significant areas such as biological medicine, [4] analytical chemistry, [5,6] fundamental physics, [7][8][9] and inertial navigation. [10,11] For a typical optical pumping NMR system shown in Fig.…”
Section: Introductionmentioning
confidence: 99%
“…Photoionization microscopy of hydrogen atom in a non-uniform electrical field in the z coordinate was treated in Ref. [123]. Note that, the VMIS electrode geometry produces inhomogeneous electric fields but the gradient of the electric field should be high enough in order to have an impact on the trajectories near the Coulomb center, <5 μm, and on the same time the laser-atom interaction region should be kept smaller than this value, at least in the z coordinate.…”
Section: Outlook and Perspectivesmentioning
confidence: 99%