Graphene Capacitor-Based Electrical Switching of Mode-Locking in All-Fiberized Femtosecond Lasers
- Authors
- Kovalchuk, Oleksiy; Uddin, Siam; Lee, Sungjae; Song, Yong-Won
- Issue Date
- 2020-12-02
- Publisher
- American Chemical Society
- Citation
- ACS Applied Materials & Interfaces, v.12, no.48, pp.54005 - 54011
- Abstract
- Effective high-capacity data management necessitates the use of ultrafast fiber lasers with mode-locking-based femtosecond pulse generation. We suggest a simple but highly efficient structure of a graphene saturable absorber in the form of a graphene/poly(methyl methacrylate) (PMMA)/graphene capacitor and demonstrate the generation of ultrashort pulses by passive mode-locking in a fiber ring laser cavity, with simultaneous electrical switching (on/off) of the mode-locking operation. The voltage applied to the capacitor shifts the Fermi level of the graphene layers, thereby controlling their nonlinear light absorption, which is directly correlated with mode-locking. The flexible PMMA layer used for graphene transfer also acts as a dielectric layer to realize a very simple but effective capacitor structure. By employing the graphene capacitor on the polished surface of a D-shaped fiber, we demonstrate the switching reversibly from the femtosecond pulse regime to a continuous wave regime of the ring laser with of the mode-locking operation an extinction ratio of 70.4 dB.
- Keywords
- SATURABLE ABSORBER; LAYER GRAPHENE; ABSORPTION; PULSES; GROWTH; SATURABLE ABSORBER; LAYER GRAPHENE; ABSORPTION; PULSES; GROWTH; graphene capacitor; saturable absorber; mode-locking; electrical switching; reversible pulse switching; graphene Fermi level shift
- ISSN
- 1944-8244
- URI
- https://pubs.kist.re.kr/handle/201004/117695
- DOI
- 10.1021/acsami.0c15479
- Appears in Collections:
- KIST Article > 2020
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