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arXiv 2004-01-28 DOI 10.1016/j.spmi.2004.03.003 0 views

Molecular states observed in a single pair of strongly coupled self-assembled InAs quantum dots

Ota, T. · Stopa, M. · Rontani, M. · Hatano, T. · Yamada, K. · Tarucha, S. · Song, H. Z. · Nakata, Y. · Miyazawa, T. · Ohshima, T. · Yokoyama, N.

Original · EN

Molecular states in a SINGLE PAIR of strongly coupled self-assembled InAs quantum dots are investigated using a sub-micron sized single electron transistor containing just a few pairs of coupled InAs dots embedded in a GaAs matrix. We observe a series of well-formed Coulomb diamonds with charging energy of less than 5 meV, which are much smaller than those reported previously. This is because electrons are occupied in molecular states, which are spread over both dots and occupy a large volume. In the measurement of ground and excited state single electron transport spectra with magnetic field, we find that the electrons are sequentially trapped in symmetric and anti-symmetric states. This result is well-explained by numerical calculation using an exact diagonalization method.

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