We show theoretically and numerically how to optimize sign-alternating dispersion waveguides for maximum nonlinear pulse compression, while leveraging the substantial increase in bandwidth-to-input peak power advantage of these structures. We find that the spectral phase can converge to a parabolic profile independent of uncompensated higher-order dispersion. The combination of an easy to compress phase spectrum, with low input power requirements, then makes sign-alternating dispersion a scheme for high-quality nonlinear pulse compression that does not require high powered lasers, which is beneficial for instance in integrated photonic circuits. We also show a new nonlinear compression regime and soliton shaping dynamic only seen in sign-al...
We demonstrate effective pulse compression in photonic crystal fibers with linearly decreasing dispe...
A novel technique to generate ultrashort fundamental solitons is proposed and demonstrated numerical...
We demonstrate that high fidelity compression is possible when normally dispersive waveguide arrays ...
We demonstrate an improved concept for nearly bandwidth-limited nonlinear pulse compression down to ...
Pulse propagation in optical fibre communication systems is affected by the fibre nonlinearity even ...
When an ultrafast optical pulse with high intensity propagates through transparent material a superc...
We show that temporal pulse compression can be achieved by using an integrated, low dispersion, high...
We propose a novel method based on the so-called shortcut-to-adiabatic passage techniques to achieve...
Nonlinear optics enables the manipulation of the spectral and temporal features of light. We used th...
Fiber Lasers VIII: Technology, Systems, and Applications, San Francisco, CA, 24-27 January 2011Non-a...
We numerically demonstrate effective pulse compression in photonic crystal fibers with linearly decr...
In this paper, the conditions of the self-similar propagation of the parabolic pulse (PP) in passive...
On chip high quality and high degree pulse compression is desirable in the realization of integrated...
We propose a new, simple approach to enhance the spectral compression process arising from nonlinear...
We propose two new approaches to enhance the spectral compression process arising from nonlinear pul...
We demonstrate effective pulse compression in photonic crystal fibers with linearly decreasing dispe...
A novel technique to generate ultrashort fundamental solitons is proposed and demonstrated numerical...
We demonstrate that high fidelity compression is possible when normally dispersive waveguide arrays ...
We demonstrate an improved concept for nearly bandwidth-limited nonlinear pulse compression down to ...
Pulse propagation in optical fibre communication systems is affected by the fibre nonlinearity even ...
When an ultrafast optical pulse with high intensity propagates through transparent material a superc...
We show that temporal pulse compression can be achieved by using an integrated, low dispersion, high...
We propose a novel method based on the so-called shortcut-to-adiabatic passage techniques to achieve...
Nonlinear optics enables the manipulation of the spectral and temporal features of light. We used th...
Fiber Lasers VIII: Technology, Systems, and Applications, San Francisco, CA, 24-27 January 2011Non-a...
We numerically demonstrate effective pulse compression in photonic crystal fibers with linearly decr...
In this paper, the conditions of the self-similar propagation of the parabolic pulse (PP) in passive...
On chip high quality and high degree pulse compression is desirable in the realization of integrated...
We propose a new, simple approach to enhance the spectral compression process arising from nonlinear...
We propose two new approaches to enhance the spectral compression process arising from nonlinear pul...
We demonstrate effective pulse compression in photonic crystal fibers with linearly decreasing dispe...
A novel technique to generate ultrashort fundamental solitons is proposed and demonstrated numerical...
We demonstrate that high fidelity compression is possible when normally dispersive waveguide arrays ...