Showing 81 - 100 results of 367 for search '"optofluidics"', query time: 0.20s Refine Results
  1. 81

    Laser micromachining of diamond: A viable photonic and optofluidic platform by Jedrkiewicz Ottavia, Kuriakose Akhil, Giakoumaki Argyri N., Coccia Giulio, Bollani Monica, Ramponi Roberta, Eaton Shane M.

    Published 2022-01-01
    “…We describe how the ultrafast laser micromachining technique applied with different writing methods can be used for the creation of various building blocks essential for the realization of a photonic and optofluidic diamond platform. Waveguides, NV centers, conductive wires, microchannels and microholes can be obtained thanks to laser microfabrication with suitable pulse parameters, making use not only of standard Gaussian laser beams but also of non-diffracting Bessel beams, the latter especially in all those cases where single pass high aspect-ratio microstructures or ablated areas are needed.…”
    Get full text
    Article
  2. 82

    Nanoparticles sorting and assembly based on double-axicon in an optofluidic chip by Shi, Y. Z., Xiong, S., Chin, L. K., Ren, M., Liu, A. Q.

    Published 2014
    “…This paper presents a novel optofluidic system for nanoparticle sorting by using interference patterns generated through a double-axicon. …”
    Get full text
    Get full text
    Conference Paper
  3. 83
  4. 84

    Monitoring osmotic pressure with a hydrogel integrated optofluidic microlaser by Jie, Randall Ang, Gong, Xuerui, Qiao, Zhen, Chen, Yu-Cheng

    Published 2023
    “…The ability to detect osmotic pressure with optofluidic lasers illuminates the potential for on-chip sensing of body fluids and cellular environments.…”
    Get full text
    Journal Article
  5. 85
  6. 86
  7. 87
  8. 88
  9. 89

    Dual optofluidic distributed feedback dye lasers for multiplexed biosensing applications by Tyler Sano, Ravipa Losakul, Holger Schmidt

    Published 2023-10-01
    “…Abstract Integrated optofluidic devices have become subjects of high interest for rapid biosensor devices due to their unique ability to combine the fluidic processing of small volumes of microfluidics with the analysis capabilities of photonic structures. …”
    Get full text
    Article
  10. 90

    Caged-Sphere Optofluidic Sensors: Whispering Gallery Resonators in Wicking Microfluidics by Nicolas Riesen, Zane Q. Peterkovic, Bin Guan, Alexandre François, David G. Lancaster, Craig Priest

    Published 2022-05-01
    “…The rapid development of optofluidic technologies in recent years has seen the need for sensing platforms with ease-of-use, simple sample manipulation, and high performance and sensitivity. …”
    Get full text
    Article
  11. 91
  12. 92
  13. 93

    Suppression of photothermal convection using silicon carbide substrates for optofluidics experiments by Ya-Tang Yang, Kyoko Namura, Meng-Chia Tsai, Motofumi Suzuki

    Published 2020-06-01
    “…Keywords: Silicon carbide, Optofluidics, Thermal convection, Optical trapping, Plasmonics…”
    Get full text
    Article
  14. 94

    Low-cost fluorescence microscope with microfluidic device fabrication for optofluidic applications by Nagaraj Nagalingam, Aswin Raghunathan, Vikram Korede, Edwin F.J. Overmars, Shih-Te Hung, Remco Hartkamp, Johan T. Padding, Carlas S. Smith, Huseyin Burak Eral

    Published 2023-06-01
    “…Optofluidic devices have revolutionized the manipulation and transportation of fluid at smaller length scales ranging from micrometers to millimeters. …”
    Get full text
    Article
  15. 95
  16. 96

    Piezophototronic gated optofluidic logic computations empowering intrinsic reconfigurable switches by Yuvasree Purusothaman, Nagamalleswara Rao Alluri, Arunkumar Chandrasekhar, Vivekananthan Venkateswaran, Sang-Jae Kim

    Published 2019-09-01
    “…Designing optofluidic nano/microsystems to realize large-scale Boolean circuits remains a challenge. …”
    Get full text
    Article
  17. 97
  18. 98
  19. 99

    High‐Throughput Parallel Optofluidic 3D‐Imaging Flow Cytometry by Masashi Ugawa, Sadao Ota

    Published 2022-07-01
    “…This method enables fast, parallel optofluidic scanning of cells by performing 1D acoustofluidic focusing on multiple cells under wide‐field light‐sheet microscopy with a single objective lens. …”
    Get full text
    Article
  20. 100