activity
20062009
most citedSupporting Online Material for "Strong Interactions in Multimode Random Lasers"

401 citations · 1.3k across the 10 of their papers we have counts for

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Showing 2008Show all

6 papers · 1 filter

cond-mat.mes-hall2008198 cited

The quantum optical Josephson interferometer

Dario Gerace, Hakan E. Tureci, A. Imamoglu +2

The interplay between coherent tunnel coupling and on-site interactions in dissipation-free bosonic systems has lead to many spectacular observations, ranging from the demonstratio…

physics.optics200851 cited

Ab initio self-consistent laser theory and random lasers

Hakan E. Türeci, A. Douglas Stone, Li Ge +2

We review our recent work leading to steady-state solutions of the semiclassical (Maxwell-Bloch) equations of a laser. These are coupled non-linear partial differential equations i…

physics.optics200849 cited

Quantitative Verification of Ab Initio Self-consistent Laser Theory

Li Ge, Robert J. Tandy, A. Douglas Stone +1

We generalize and test the recent "ab initio" self-consistent (AISC) time-independent semiclassical laser theory. This self-consistent formalism generates all the stationary lasing…

physics.optics2008401 cited

Supporting Online Material for "Strong Interactions in Multimode Random Lasers"

Hakan E. Türeci, Li Ge, Stefan Rotter +1

This preprint contains the Supporting Online Material for our paper ''Strong Interactions in Multimode Random Lasers'', Science 320, 643 (2008) (also available at: arXiv:0805.4496)…

physics.optics2008401 cited

Strong Interactions in Multimode Random Lasers

Hakan E. Türeci, Li Ge, Stefan Rotter +1

Unlike conventional lasers, diffusive random lasers (DRLs) have no resonator to trap light and no high-Q resonances to support lasing. Due to this lack of sharp resonances the DRL…

cond-mat.mes-hall20085 cited

Interacting Quantum Dot Coupled to a Kondo Spin: A Universal Hamiltonian Study

Stefan Rotter, Hakan E. Türeci, Y. Alhassid +1

We study a mesoscopic interacting quantum dot described by the "universal Hamiltonian" that is coupled to a Kondo spin. The ferromagnetic exchange interaction within the dot leads…