logo
    Spatiotemporal shearing-based ultrafast framing photography for high performance transient imaging
    0
    Citation
    0
    Reference
    10
    Related Paper
    Keywords:
    Shearing (physics)
    Framing (construction)
    Ultrafast optics
    Point spread function
    We demonstrate the ability to control dissociation rates of H2+ molecules from targeted vibrational levels using strong (4 × 1013 W/cm2) laser fields and simple analytically designed ultrafast pulse shapes.
    Quantum Control
    Ultrafast optics
    Coherent control
    Citations (0)
    We present an ultrafast tunable non-collinear parametric oscillator which can be switched with >500 nm/ms over a wide spectral range from 650 - 1070 nm making the system ideally suited for novel ultrafast bio-imaging techniques.
    Ultrafast optics
    Parametric oscillator
    Optical parametric amplifier
    Dielectric-metasurface-enabled pulse shaper provides a versatile platform for custom engineering the spatiotemporal evolution of ultrafast optical pulses. Here, we investigate its ability to perform complex optical transformations, such as mathematical operations, on femtosecond timescale pulses.
    Ultrafast optics
    Femtosecond pulse
    Using the STRIPED FISH technique, we measured ultrafast lighthouse effect, which corresponds to pulse amplitude coupling in the spatial-frequency-temporal (k,t) domain. The effect was analyzed and displayed by a spatiotemporal movie in 3D.
    Ultrafast optics
    Spatial frequency
    Citations (1)
    Van der Waals (vdW) materials hold immense promise for new nanotechnologies. However, more insight into their behavior under non-equilibrium conditions on femtosecond time scales and their support of exotic nonlinear processes is needed. In this talk, we will first discuss our recent studies of ultrafast lattice and spin dynamics in vdW magnets. Here, we uncover unusually strong transient spin-phonon coupling, manifesting as pump helicity-dependencies and dynamic magnetostriction-driven stiffening of coherent phonon modes. In both these cases, these phenomena originate from the pronounced modulation of exchange interactions through the distortion of the lattice. We will then turn to nonlinear optical processes, namely harmonic conversion and optical parametric amplification driven by twisted light. Here, we show both the efficient harmonic scaling of orbital angular momentum and the free tuning of wavelength and topological charge of vortex beams, both supported by atomically thin semiconductors. Our work points to new ways to exploit femtosecond and structured illumination to extend the versatility of vdW materials in the pursuit of new spintronic and optoelectronic applications.
    Ultrafast optics
    Citations (0)
    We report recent advances in pulse compression, frequency upconversion to the ultraviolet, polarisation control, and flexible pulse delivery experiments in the ultrafast regime, using different types of hollow-core fibres.
    Photon Upconversion
    Ultrafast optics
    Pulse compression
    Citations (0)
    In the last decade, femtosecond terawatt lasers have enabled the generation of ultrashort x-ray pulses in small-scale laboratories. By combining ultrafast x-ray probing with optical laser pumping, researchers have now access to transient structural informations.
    Ultrafast optics
    Optical Pumping
    Transient (computer programming)
    Citations (0)