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1 - 7 of 7 search results for microchip |u:www.np.phy.cam.ac.uk
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  2. Perpendicular coupling to in-plane photonics using arc…

    https://www.np.phy.cam.ac.uk/system/files/documents/apl12-directwritewgs.pdf
    The simple one-step direct write. fabrication uses a low power picosecond microchip laser for two-photon polymerization with. ... photon polymerization using a picosecond microchip laser. Such arc waveguides have significant advantages in compari-.
  3. SERSbot: Revealing the Details of SERS Multianalyte Sensing Using…

    https://www.np.phy.cam.ac.uk/files/acssensors21_sersrobot.pdf
    10 Dec 2021: All mechanical components are controlled by an 8-bit micro-controller (Microchip AVR Atmega256), which receives G-code-likeinstructions from a PC via USB.
  4. 10156_21043_105581.DOC

    https://www.np.phy.cam.ac.uk/system/files/documents/optexp06-pitplasmons.pdf
    White light, ranging from 490nm to 1.7µm, produced by a microchip laser and nonlinear photonic crystal fibre was focused onto the nanostructured samples by a 300mm focal length lens, producing
  5. Coupled counterrotating polariton condensates inoptically defined…

    https://www.np.phy.cam.ac.uk/system/files/documents/PNAS14_ringcondensates.pdf
    Phys Rev B 85(23):235303.29. Naidoo D, et al. (2011) Transverse mode selection in a monolithic microchip laser.
  6. Nanowire-based multifunctional antireflection coatings for solar cells

    https://www.np.phy.cam.ac.uk/system/files/documents/NanoScale14_ZnOnanowireSolarCell.pdf
    Results and discussionAntireflection. Angularly resolved reflectivity measurements (Fig. 2(a) and (b))were taken with a supercontinuum white-light laser obtainedvia the non-linear dispersion of a passively mode locked1064 microchip
  7. Nanoparticle-tuned structural color from polymer opals Otto L. J. ...

    https://www.np.phy.cam.ac.uk/system/files/documents/optexp07-polymer-opal.pdf
    excited by an unpolarised super-continuum light source (emitted by a holey fiber pumped with 1064nm Nd-YAG microchip laser pulses) focused to a 500μm spot.
  8. 10156_21043_105581.DOC

    https://www.np.phy.cam.ac.uk/system/files/documents/optexp06-klarite.pdf
    White light, ranging from 490nm to 1.7µm, produced by a microchip laser and nonlinear photonic crystal fibre was focused onto the nanostructured samples by a 300mm focal length lens, producing

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