activity
20102016
most citedThe influence of geometry and topology of quantum graphs on their nonlinear-optical properties

26 citations · 88 across the 7 of their papers we have counts for

collaborators

10 papers

physics.optics2016★ 11 cited

Applying universal scaling laws to identify the best molecular design paradigms for third-order nonlinear optics

Javier Perez-Moreno, Shoresh Shafei, Mark G. Kuzyk

The scaling of the fundamental limits of the second hyperpolarizability is used to define the intrinsic second hyperpolarizability, which aids in identifying material classes with…

physics.optics2016★ 6 cited

Applying universal scaling laws to identify the best molecular design paradigms for second-order nonlinear optics

Javier Perez-Moreno, Shoresh Shafei, Mark G. Kuzyk

We apply scaling and the theory of the fundamental limits of the second-order molecular susceptibility to identify material classes with ultralarge nonlinear-optical response. Size…

quant-ph2014★ 7 cited

Optimum topology of quasi-one dimensional nonlinear optical quantum systems

Rick Lytel, Shoresh Shafei, Mark G. Kuzyk

We determine the optimum topology of quasi-one dimensional nonlinear optical structures using generalized quantum graph models. Quantum graphs are relational graphs endowed with a…

physics.optics2013★ 17 cited

The paradox of the many-state catastrophe of fundamental limits and the three-state conjecture

Shoresh Shafei, Mark G. Kuzyk

The calculation of the fundamental limits of nonlinear susceptibilities posits that when a quantum system has a nonlinear response at the fundamental limit, only three energy eigen…

physics.optics2013★ 3 cited

Scaling and universality in nonlinear optical quantum graphs containing star motifs

Rick Lytel, Shoresh Shafei, Mark G. Kuzyk

Quantum graphs have recently emerged as models of nonlinear optical, quantum confined systems with exquisite topological sensitivity and the potential for predicting structures wit…

physics.optics2012★ 18 cited

Geometry-Controlled Nonlinear Optical Response of Quantum Graphs

Shoresh Shafei, Rick Lytel, Mark G. Kuzyk

We study for the first time the effect of the geometry of quantum wire networks on their nonlinear optical properties and show that for some geometries, the first hyperpolarizabili…