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20022011
most citedQuantum Spin Hall Effect and Topological Phase Transition in HgTe Quantum Wells

7.1k citations

Showing cond-mat.otherShow all

19 papers · 1 filter

cond-mat.other200810 cited

Fine structure in the electronic density of states of Al-Ni-Co decagonal quasicrystal from ultrafast time-resolved optical reflectivity

T. Mertelj, A. Oslak, J. Dolinsek +3

We measured the temperature and fluence dependence of the time-resolved photoinduced optical reflectivity in a decagonal Al_{71.9}Ni_{11.1}Co_{17.0} quasicrystal. We find no eviden…

cond-mat.other200825 cited

Design and Performance of a Practical Variable-Temperature Scanning Tunneling Potentiometry System

M. Rozler, M. R. Beasley

We have constructed a scanning tunneling potentiometry system capable of simultaneously mapping the transport-related electrochemical potential of a biased sample along with its su…

cond-mat.other2008143 cited

Modeling of a Cantilever-Based Near-Field Scanning Microwave Microscope

K. Lai, W. Kundhikanjana, M. Kelly +1

We present a detailed modeling and characterization of our scalable microwave nanoprobe, which is a micro-fabricated cantilever-based scanning microwave probe with separated excita…

cond-mat.other200711 cited

Scanning optical homodyne detection of high-frequency picoscale resonances in cantilever and tuning fork sensors

Gabriel Zeltzer, Jason C. Randel, Amit K. Gupta +3

Higher harmonic modes in nanoscale silicon cantilevers and microscale quartz tuning forks are detected and characterized using a custom scanning optical homodyne interferometer. Ca…

cond-mat.other200749 cited

Nuclear magnetic resonance force microscopy with a microwire rf source

M. Poggio, C. L. Degen, C. T. Rettner +2

We use a 1.0-um-wide patterned Cu wire with an integrated nanomagnetic tip to measure the statistical nuclear polarization of 19F in CaF2 by magnetic resonance force microscopy (MR…

cond-mat.other2007253 cited

Nuclear Magnetic Resonance Imaging with 90 nm Resolution

H. J. Mamin, M. Poggio, C. L. Degen +1

Magnetic resonance imaging, based on the manipulation and detection of nuclear spins, is a powerful imaging technique that typically operates on the scale of millimeters to microns…