Revealing the Exciton Fine Structure in PbSe Nanocrystal Quantum Dots
arXiv:1006.5673 · doi:10.1103/PhysRevLett.105.067403
Abstract
We measure the photoluminescence (PL) lifetime, , of excitons in colloidal PbSe nanocrystals (NCs) at low temperatures to 270~mK and in high magnetic fields to 15~T. For all NCs (1.3-2.3~nm radii), increases sharply below 10~K but saturates by 500~mK. In contrast to the usual picture of well-separated ``bright" and ``dark" exciton states (found, e.g., in CdSe NCs), these dynamics fit remarkably well to a system having two exciton states with comparable - but small - oscillator strengths that are separated by only 300-900 eV. Importantly, magnetic fields reduce below 10~K, consistent with field-induced mixing between the two states. Magnetic circular dichroism studies reveal exciton g-factors from 2-5, and magneto-PL shows 10\% circularly polarized emission.
To appear in Physical Review Letters