Bibliographic Details
Title: |
Mode volume, energy transfer, and spaser threshold in plasmonic systems with gain |
Authors: |
Shahbazyan, Tigran V. |
Source: |
ACS Photonics 4, 1003 (2017) |
Publication Year: |
2017 |
Collection: |
Condensed Matter |
Subject Terms: |
Condensed Matter - Mesoscale and Nanoscale Physics |
More Details: |
We present a unified approach to describe spasing in plasmonic systems modeled by quantum emitters interacting with resonant plasmon mode. We show that spaser threshold implies detailed energy transfer balance between the gain and plasmon mode and derive explicit spaser condition valid for arbitrary plasmonic systems. By defining carefully the plasmon mode volume relative to the gain region, we show that the spaser condition represents, in fact, the standard laser threshold condition extended to plasmonic systems with dispersive dielectric function. For extended gain region, the saturated mode volume depends solely on the system parameters that determine the lower bound of threshold population inversion. Comment: 8 pages, 3 figures |
Document Type: |
Working Paper |
Access URL: |
http://arxiv.org/abs/1701.08148 |
Accession Number: |
edsarx.1701.08148 |
Database: |
arXiv |