Abstract

Femtosecond-resolved Faraday rotation is used to probe spin dynamics in chemically synthesized CdSe quantum dots 22--80 \AA{} in diameter from T=6--282 K. The precession of optically injected spins in a transverse magnetic field indicates that the measured relaxation lifetime of the spin polarization is dominated by inhomogeneous dephasing, ranging from \ensuremath{\sim}3 ns at zero field to 100 ps at 4 T. Fourier analysis reveals a multiperiodic Larmor precession, with several distinct g factors ranging from \ensuremath{\sim}1.1 to 1.7.

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