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She has published her scholarship research in leading academic journals and books.
"Miriam has written a great thesis on a highly topical theme.
It is truly impressive that she has managed to finish such a good Ph D thesis in a relatively short period of time, while also occupying a fulltime position at the ICJ (and becoming a mother! I look forward to seeing her career path rising further from here on, with plenty of excellent publications already on the horizon and by contributing to international proceedings, such as at ITLOS. They have been instrumental in the development of my research, through an ongoing discussion of ideas, arguments, and by providing crucial mentorship and support along the way.
It then examines the leading International Criminal Court (ICC) decisions on reparations and dwells upon whether some aspects of criminal justice (e.g.
standard of evidence, rights of the accused, prosecutorial discretion, etc.) give rise to tension concerning the civil nature of reparations.
The next experiment uses single photon counting to detect individual phonon emission and absorption events within the nanomechanical oscillator.
The scattering of laser light from mechanical motion produces correlated photon-phonon pairs, and detection of the emitted photon corresponds to an effective phonon counting scheme.
Alongside advances in micro- and nano-fabrication, the burgeoning field of optomechanics has yielded a class of highly engineered systems designed to produce strong interactions between light and motion.
Optomechanical crystals are one such system in which the patterning of periodic holes in thin dielectric films traps both light and sound waves to a micro-scale volume.
While several efficient methods of optical coupling exist to meet this task, most are unsuitable for the cryogenic or vacuum integration required for many applications.
The first portion of this dissertation will detail the development of robust and efficient methods of optically coupling optomechanical resonators to optical fibers, with an emphasis on fabrication processes and optical characterization.