The 1S-2S two-photon transition in singly ionized helium is a highly interesting candidate for precision tests of bound-state quantum electrodynamics (QED). With the recent advent of extreme ultraviolet frequency combs, highly coherent quasi-continuous-wave light sources at 61 nm have become available, and precision spectroscopy of this transition now comes into reach for the first time. We discuss quantitatively the feasibility of such an experiment by analyzing excitation and ionization rates, propose an experimental scheme, and explore the potential for QED tests. © 2009 The American Physical Society
In contrast to the extensively studied hydrogen atom, the quantum electrodynamic Lamb shift in heliu...
In this work, the influence of intense extreme-ultraviolet (XUV) fields on helium is experimentally ...
International audienceThe relative phase of first ( ω 1 ) and third harmonics ( ω 3 ) extreme ultrav...
The 1S-2S two-photon transition in singly ionized helium is a highly interesting candidate for preci...
The 1S-2S two-photon transition in singly ionized helium is a highly interesting candidate for preci...
The energy levels of hydrogen-like atoms and ions are accurately described by bound-state quantum el...
High-precision laser spectroscopy of atomic hydrogen has led to an impressive accuracy in tests of b...
We demonstrate high resolution frequency comb spectroscopy in the extreme ultraviolet for the first ...
We analyze several possibilities for precisely measuring electronic transitions in atomic helium by ...
In this thesis we shall describe the design and realisation of an experiment with the ultimate aim o...
We describe techniques for laser spectroscopy in the vacuum-UV (VUV) spectral region that combine hi...
The remarkable precision of frequency-comb (FC) lasers is transferred to the extreme ultraviolet (XU...
The hydrogen atom is an important testing ground for fundamental physical theory, because it is the ...
High-precision spectroscopy experiments with simple atomic and molecular systems provide important b...
Non-linear photoionization of molecules in the 10–50 eV range is a prerequisite for pump-probe measu...
In contrast to the extensively studied hydrogen atom, the quantum electrodynamic Lamb shift in heliu...
In this work, the influence of intense extreme-ultraviolet (XUV) fields on helium is experimentally ...
International audienceThe relative phase of first ( ω 1 ) and third harmonics ( ω 3 ) extreme ultrav...
The 1S-2S two-photon transition in singly ionized helium is a highly interesting candidate for preci...
The 1S-2S two-photon transition in singly ionized helium is a highly interesting candidate for preci...
The energy levels of hydrogen-like atoms and ions are accurately described by bound-state quantum el...
High-precision laser spectroscopy of atomic hydrogen has led to an impressive accuracy in tests of b...
We demonstrate high resolution frequency comb spectroscopy in the extreme ultraviolet for the first ...
We analyze several possibilities for precisely measuring electronic transitions in atomic helium by ...
In this thesis we shall describe the design and realisation of an experiment with the ultimate aim o...
We describe techniques for laser spectroscopy in the vacuum-UV (VUV) spectral region that combine hi...
The remarkable precision of frequency-comb (FC) lasers is transferred to the extreme ultraviolet (XU...
The hydrogen atom is an important testing ground for fundamental physical theory, because it is the ...
High-precision spectroscopy experiments with simple atomic and molecular systems provide important b...
Non-linear photoionization of molecules in the 10–50 eV range is a prerequisite for pump-probe measu...
In contrast to the extensively studied hydrogen atom, the quantum electrodynamic Lamb shift in heliu...
In this work, the influence of intense extreme-ultraviolet (XUV) fields on helium is experimentally ...
International audienceThe relative phase of first ( ω 1 ) and third harmonics ( ω 3 ) extreme ultrav...