We propose a scheme for the emission of few-cycle dispersive waves in the midinfrared using hollow-core photonic crystal fibers filled with noble gas. The underlying mechanism is the formation of a plasma cloud by a self-compressed, subcycle pump pulse. The resulting free-electron population modifies the fiber dispersion, allowing phase-matched access to dispersive waves at otherwise inaccessible frequencies, well into the midinfrared. Remarkably, the pulses generated turn out to have durations of the order of two optical cycles. In addition, this ultrafast emission, which occurs even in the absence of a zero dispersion point between pump and midinfrared wavelengths, is tunable over a wide frequency range simply by adjusting the gas pressur...
We study theoretically the propagation of relatively long pulses with ionizing intensities in a holl...
We theoretically show an approach to generate intense frequency-tunable few-cycle femtosecond pulses...
An efficient and tunable 176-550 nm source based on the emission of resonant dispersive radiation fr...
We propose a scheme for the emission of few-cycle dispersive waves in the midinfrared using hollow-c...
Gas-filled hollow-core photonic crystal fibre is being used to generate ever wider super-continuum s...
High-energy, single-mode, coherent, ultrafast pulses of light -tunable from the vacuum-UV to the vis...
We report on the generation of a three-octave-wide supercontinuum extending from the vacuum ultravio...
Although ultraviolet (UV) light is important in many areas of science and technology, there are very...
Hollow-core photonic-crystal fibre (HC-PCF) [1] provides a highly efficient means for investigating ...
Soliton dynamics, coupled with either plasma formation or molecular modulation, enable the efficient...
We present the details of our previously formulated model [Saleh et al., Phys. Rev. Lett. 107, 20390...
Unlike the capillaries conventionally used for gas-based spectral broadening of ultrashort (<100 fs)...
Gas-filled hollow-core photonic crystal fiber (HC-PCF) is an ideal vehicle for studying nonlinear fi...
We report generation of an ultrafast supercontinuum extending into the mid-infrared in gas-filled si...
We review the use of hollow-core photonic crystal fibers (PCFs) in the field of ultrafast gas-based ...
We study theoretically the propagation of relatively long pulses with ionizing intensities in a holl...
We theoretically show an approach to generate intense frequency-tunable few-cycle femtosecond pulses...
An efficient and tunable 176-550 nm source based on the emission of resonant dispersive radiation fr...
We propose a scheme for the emission of few-cycle dispersive waves in the midinfrared using hollow-c...
Gas-filled hollow-core photonic crystal fibre is being used to generate ever wider super-continuum s...
High-energy, single-mode, coherent, ultrafast pulses of light -tunable from the vacuum-UV to the vis...
We report on the generation of a three-octave-wide supercontinuum extending from the vacuum ultravio...
Although ultraviolet (UV) light is important in many areas of science and technology, there are very...
Hollow-core photonic-crystal fibre (HC-PCF) [1] provides a highly efficient means for investigating ...
Soliton dynamics, coupled with either plasma formation or molecular modulation, enable the efficient...
We present the details of our previously formulated model [Saleh et al., Phys. Rev. Lett. 107, 20390...
Unlike the capillaries conventionally used for gas-based spectral broadening of ultrashort (<100 fs)...
Gas-filled hollow-core photonic crystal fiber (HC-PCF) is an ideal vehicle for studying nonlinear fi...
We report generation of an ultrafast supercontinuum extending into the mid-infrared in gas-filled si...
We review the use of hollow-core photonic crystal fibers (PCFs) in the field of ultrafast gas-based ...
We study theoretically the propagation of relatively long pulses with ionizing intensities in a holl...
We theoretically show an approach to generate intense frequency-tunable few-cycle femtosecond pulses...
An efficient and tunable 176-550 nm source based on the emission of resonant dispersive radiation fr...