We demonstrate high resolution frequency comb spectroscopy in the extreme ultraviolet for the first time by exciting helium from the ground state using 51.56 nm pulses. Precision spectroscopy in the extreme ultraviolet on helium atoms and helium+ ions is very interesting as it could provide more stringent tests of quantum electrodynamics than currently possible with hydrogen. One problem is that spectroscopy in the extreme ultraviolet typically requires amplification and harmonic upconversion of visible light sources, which can introduce difficult to control systematic errors as a result of so called frequency-chirping effects [1,2]
High-resolution spectroscopy at 125 nm is performed on xenon, using amplified frequency comb pulse t...
We describe an extreme-ultraviolet frequency comb produced via high repetition rate, intracavity hig...
We report the generation of high power extreme ultraviolet frequency combs at 154 MHz repetition rat...
We report the first demonstration of frequency comb metrology at extreme ultraviolet wavelengths (XU...
The remarkable precision of frequency-comb (FC) lasers is transferred to the extreme ultraviolet (XU...
The operation of a frequency comb at extreme ultraviolet (xuv) wavelengths based on pairwise amplifi...
Frequency comb lasers in the infrared region of the spectrum have revolution-ized many fields of phy...
An extreme ultraviolet frequency comb for highly charged ion metrology Highly charged ions (HCI) hav...
Frequency comb sources based on modelocked lasers have revolutionized many fields of physics, includ...
We demonstrate that the output of a frequency comb laser can be amplified and upconverted to the vac...
The capability of frequency-comb (FC) lasers to precisely measure optical frequencies is extended to...
Highly charged ions (HCI) offer many advantages over neutral and singly charged ions for probing fun...
Frequency comb lasers [1] have led to great advances in fields such as precision spectroscopy, optic...
Many atomic and molecular systems of fundamental interest possess resonance frequencies in the extre...
We have developed an extreme ultraviolet (XUV) frequency comb for performing ultra-high precision sp...
High-resolution spectroscopy at 125 nm is performed on xenon, using amplified frequency comb pulse t...
We describe an extreme-ultraviolet frequency comb produced via high repetition rate, intracavity hig...
We report the generation of high power extreme ultraviolet frequency combs at 154 MHz repetition rat...
We report the first demonstration of frequency comb metrology at extreme ultraviolet wavelengths (XU...
The remarkable precision of frequency-comb (FC) lasers is transferred to the extreme ultraviolet (XU...
The operation of a frequency comb at extreme ultraviolet (xuv) wavelengths based on pairwise amplifi...
Frequency comb lasers in the infrared region of the spectrum have revolution-ized many fields of phy...
An extreme ultraviolet frequency comb for highly charged ion metrology Highly charged ions (HCI) hav...
Frequency comb sources based on modelocked lasers have revolutionized many fields of physics, includ...
We demonstrate that the output of a frequency comb laser can be amplified and upconverted to the vac...
The capability of frequency-comb (FC) lasers to precisely measure optical frequencies is extended to...
Highly charged ions (HCI) offer many advantages over neutral and singly charged ions for probing fun...
Frequency comb lasers [1] have led to great advances in fields such as precision spectroscopy, optic...
Many atomic and molecular systems of fundamental interest possess resonance frequencies in the extre...
We have developed an extreme ultraviolet (XUV) frequency comb for performing ultra-high precision sp...
High-resolution spectroscopy at 125 nm is performed on xenon, using amplified frequency comb pulse t...
We describe an extreme-ultraviolet frequency comb produced via high repetition rate, intracavity hig...
We report the generation of high power extreme ultraviolet frequency combs at 154 MHz repetition rat...