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SPASER As a Complex System: Femtosecond Dynamics Traced by Ab-Initio Simulations
Synthesis and SERS Application of Sio2@Au Nanoparticles
Experiment and Theory: No Spasing from Core-Shell Spasers
Plasmon Lasers
SPASERS: Nano-Lasers Going Beyond the Diffraction Limit
Open Resonator Electric Spaser Bobo Liu,† Weiren Zhu,‡ Sarath D
Magneto-Optical Spaser
A Novel Metal Nanoparticles-Graphene Nanodisks-Quantum Dots Hybrid-System-Based Spaser
Arxiv:1909.11113V2 [Cond-Mat.Mes-Hall] 4 Oct 2019 the Spaser Geometry of Ref
Hybrid Plasmonic-Photonic Nanostructures for Enhanced
Spaser Or Plasmonic Nanolaser?
Magneto-Optical Spaser
Spaser Based on Graphene Tube
Spaser, Plasmonic Amplification, and Loss Compensation
All-Analytical Semiclassical Theory of Spaser for Plasmonic Nanocavity
Topological Nanospaser a Rapid Progress
Spaser Operation Below Threshold: Autonomous Vs
Top View
Resonant Enhancement of Raman Scattering in Metamaterials with Hybrid Electromagnetic and Plasmonic Resonances
Downloaded Via and Then „Publications 2008“ 26
Plasmonics for Surface Enhanced Raman Scattering: Nanoantennas for Single Molecules
SPASER As a Complex System: Femtosecond Dynamics Traced by Ab-Initio Simulations
Nanolasers: Second-Order Intensity Correlation, Direct Modulation and Electromagnetic Isolation in Array Architectures
Ten Years of Spasers and Plasmonic Nanolasers Shaimaa I
Mark Stockman, the Knight of Plasmonics
Quantum Leap from Gold and Silver to Aluminum Nanoplasmonics for Enhanced Biomedical Applications
Plasmonics and Its Building Blocks
Spaser As Novel Versatile Biomedical Tool
TMDC-Based Topological Nanospaser: Single and Double Threshold Behavior
A Low Lasing Threshold and Widely Tunable Spaser Based on Two Dark
Spaser As a Biological Probe
Observation of Majorana Plasmon by Molecular Topological Superconductor and Its Topological SPASER
Ultrafast Dynamics of Surface Plasmon Nanolasers with Quantum Coherence And
Surface Plasmon Nanolaser: Principle, Structure, Characteristics and Applications
Wafer-Scalable Fabrication of Metal Nanostructures for Plasmonics-Assisted Biomedical Sensing Applications
DOI: 10.1126/Science.1223504 , 450 (2012); 337 Science Et Al. Yu-Jung