Abstract
Multiple scatterings occurring in a turbid medium attenuate the intensity of propagating waves. Here, we propose a method to efficiently deliver light energy to the desired target depth in a scattering medium. We measure the time-resolved reflection matrix of a scattering medium using coherent time-gated detection. From this matrix, we derive and experimentally implement an incident wave pattern that optimizes the detected signal corresponding to a specific arrival time. This leads to enhanced light delivery at the target depth. The proposed method will lay a foundation for efficient phototherapy and deep-tissue in vivo imaging in the near future. © 2013 American Physical Society.
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CITATION STYLE
Choi, Y., Hillman, T. R., Choi, W., Lue, N., Dasari, R. R., So, P. T. C., … Yaqoob, Z. (2013). Measurement of the time-resolved reflection matrix for enhancing light energy delivery into a scattering medium. Physical Review Letters, 111(24). https://doi.org/10.1103/PhysRevLett.111.243901
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