Direct probe of spectral inhomogeneity reveals synthetic tunability of single-nanocrystal spectral linewidths.
نویسندگان
چکیده
The spectral linewidth of an ensemble of fluorescent emitters is dictated by the combination of single-emitter linewidths and sample inhomogeneity. For semiconductor nanocrystals, efforts to tune ensemble linewidths for optical applications have focused primarily on eliminating sample inhomogeneities, because conventional single-molecule methods cannot reliably build accurate ensemble-level statistics for single-particle linewidths. Photon-correlation Fourier spectroscopy in solution (S-PCFS) offers a unique approach to investigating single-nanocrystal spectra with large sample statistics and high signal-to-noise ratios, without user selection bias and at fast timescales. With S-PCFS, we directly and quantitatively deconstruct the ensemble linewidth into contributions from the average single-particle linewidth and from sample inhomogeneity. We demonstrate that single-particle linewidths vary significantly from batch to batch and can be synthetically controlled. These findings delineate the synthetic challenges facing underdeveloped nanomaterials such as InP and InAs core-shell particles and introduce new avenues for the synthetic optimization of fluorescent nanoparticles.
منابع مشابه
Direct Probe of Spectral Inhomogeneity Reveals Synthetic Tunability of Single-Nanocrystal Spectral Linewidths Supplementary Information
In S-PCFS, the intensities at both outputs of the interferometer are measured and the intensity crosscorrelation function g×(δ, τ) is calculated at different interferometer path-length differences δ for temporal spacings between photons τ . Reference [1] introduces the governing equation of S-PCFS, which relates g×(δ, τ) to the single-emitter and ensemble spectral correlation functions. g×(δ, τ...
متن کاملDirect probe of spectral inhomogeneity reveals synthetic tunability of single-nanocrystal spectral linewidths Citation
The spectral linewidth of an ensemble of fluorescent emitters is dictated by a combination of the single emitter linewidths and sample inhomogeneities. For semiconductor nanocrystals, efforts to tune ensemble linewidths for optical applications have focused primarily on eliminating sample inhomogeneities because conventional single-molecule methods cannot reliably build accurate ensemble-level ...
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عنوان ژورنال:
- Nature chemistry
دوره 5 7 شماره
صفحات -
تاریخ انتشار 2013