Out-of-plane Emission Dipole of Second Harmonic Generation in Odd- and Even-layered vdWs Janus Nb<sub>3</sub>SeI<sub>7</sub>.
basic_science · Level V
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- Record sourced from PubMed, PMID 38867607.
- Also identified by DOI 10.1021/acsnano.4c02854.
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Abstract
Integration of atomically thin nonlinear optical (NLO) devices demands an out-of-plane (OP) emission dipole of second harmonic generation (SHG) to enhance the spontaneous emission for nanophotonics. However, the research on van der Waals (vdWs) materials with an OP emission dipole of SHG is still in its infancy. Here, by coupling back focal plane (BFP) imaging with numerical simulations and density functional theory (DFT) calculations, we demonstrate that vdWs Janus Nb<sub>3</sub>SeI<sub>7</sub>, ranging from bulk to the monolayer limit, exhibits a dominant OP emission dipole of SHG owing to the breaking of the OP symmetry. Explicitly, even-layered Nb<sub>3</sub>SeI<sub>7</sub> with <i>C</i><sub>6v</sub> symmetry is predicted to exhibit a pure OP emission dipole attributed to the only second-order susceptibility coefficient χ<sub>zxx</sub>. Meanwhile, although odd-layered Nb<sub>3</sub>SeI<sub>7</sub> with <i>C</i><sub>3v</sub> symmetry has both OP and IP dipole components (χ<sub>zxx</sub> and χ<sub>yyy</sub>), the value of χ<sub>zxx</sub> is 1 order of magnitude greater than that of χ<sub>yyy</sub>, leading to an approximate OP emission dipole of SHG. Moreover, the crystal symmetry and OP emission dipole can be preserved under hydrostatic pressure, accompanied by the enhanced χ<sub>zxx</sub> and the resulting 3-fold increase in SHG intensity. The reported stable OP dipole in 2D vdWs Nb<sub>3</sub>SeI<sub>7</sub> can facilitate the rapid development of chip-integrated NLO devices.