Publication | Closed Access
Broadband Nonlinear Photonics in Few‐Layer MXene Ti<sub>3</sub>C<sub>2</sub>T<sub>x</sub> (T = F, O, or OH)
714
Citations
44
References
2017
Year
Optical MaterialsQuantum PhotonicsEngineeringNonlinear OpticsOptoelectronic DevicesStable Femtosecond LaserOptical PropertiesNanophotonicsMaterials SciencePhotonicsPhysicsNon-linear OpticPhotonic MaterialsOptoelectronic MaterialsMxene Ti 3Nonlinear CrystalsPhotonic DeviceBroadband Nonlinear PhotonicsElectronic MaterialsApplied PhysicsGrapheneMxene FamilyGraphene NanoribbonLight AbsorptionOptoelectronics
Let's parse content. Background sentences: two lines. Summarize: "Nonlinear optical phenomena in 2D crystalline materials enable diverse photonic applications, and MXene, a tunable 2D material, has attracted attention for its electronic/optical properties." Keep concise. Purpose/Mechanism: same line: "In this study, we systematically characterize the nonlinear optical response of MXene Ti3C2Tx nanosheets over 800-1800 nm." That's both purpose and mechanism.
Abstract Studies of the nonlinear optical phenomena that describe the light‐matter interactions in 2D crystalline materials have promoted a diverse range of photonic applications. MXene, as a recently developed new 2D material, has attracted considerable attention because of its graphene‐like but highly tunable and tailorable electronic/optical properties. In this study, we systematically characterize the nonlinear optical response of MXene Ti 3 C 2 T x nanosheets over the spectral range of 800 nm to 1800 nm. A large effective nonlinear absorption coefficient (β eff ∼‐10 −21 m 2 /V 2 ) due to saturable absorption is observed for all of the testing wavelengths. The contribution of saturable absorption is two orders of magnitude higher than other lossy nonlinear absorption processes, and the amplitude of β eff strongly depends on the light bleaching level. A negative nonlinear refractive index (n 2 ∼‐10 −20 m 2 /W) with value comparable to that of the intensively studied graphene was demonstrated for the first time. These results demonstrate the efficient broadband light signal manipulating capabilities of Ti 3 C 2 T x , which is only one member of the large MXene family. The capability of an efficient broadband optical switch is strongly confirmed using Ti 3 C 2 T x as saturable absorbers for mode‐locking operation at 1066 nm and 1555 nm, respectively. A highly stable femtosecond laser with pulse duration as short as 159 fs in the telecommunication window is readily obtained. Considering the diversity of the MXene family, this study may open a new avenue to advanced photonic devices.
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