English

High resolution 3D imaging of diamonds with multiphoton microscopy

Optics 2025-11-27 v1 Materials Science Applied Physics Geophysics

Abstract

Diamonds offer unique benefits for optical technology development due to their optical, chemical, electrical, mechanical, and thermal properties. These attributes also contribute to their aesthetic appeal, high commercial value, and utility in geological studies. Thus, there is high demand for nondestructive techniques that enable rapid analysis of natural and synthetic diamonds as well as diamond-like simulants. Here, we demonstrate sub-micrometer, nondestructive, three-dimensional imaging and spectral analysis of diamonds using multiphoton microscopy (MPM). This approach stimulates nonlinear optical emissions to provide unique insights into the interior structure, fluorescent defects, and formational conditions of diamonds. As a result, MPM can be used to investigate gemstone quality, vacancy centers used in quantum technologies, and the various inclusions and fluorescent emitters that may trace gemstone provenance and treatment history.

Keywords

Cite

@article{arxiv.2511.21544,
  title  = {High resolution 3D imaging of diamonds with multiphoton microscopy},
  author = {Elana G. Alevy and Samuel D. Crossley and Lam T. Nguyen and Vu D. Phai and Khanh Q. Kieu},
  journal= {arXiv preprint arXiv:2511.21544},
  year   = {2025}
}

Comments

13 pages including references, 6 captioned figures, 1 table