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41.
Lau RK Ménard M Okawachi Y Foster MA Turner-Foster AC Salem R Lipson M Gaeta AL 《Optics letters》2011,36(7):1263-1265
We report the first demonstration of cw wavelength conversion from the telecommunications band to the mid-IR (MIR) region via four-wave mixing in silicon nanowaveguides. We measure a parametric bandwidth of 748 nm by converting a 1636 nm signal to produce a 2384 nm idler and show continuously tunable wavelength conversion from 1792 to 2116 nm. This report indicates that the advantages of silicon photonics may be leveraged to create devices for a large range of MIR applications that require cw operation. 相似文献
42.
Chakhalian J Rondinelli JM Liu J Gray BA Kareev M Moon EJ Prasai N Cohn JL Varela M Tung IC Bedzyk MJ Altendorf SG Strigari F Dabrowski B Tjeng LH Ryan PJ Freeland JW 《Physical review letters》2011,107(11):116805
Using resonant x-ray spectroscopies combined with density functional calculations, we find an asymmetric biaxial strain-induced d-orbital response in ultrathin films of the correlated metal LaNiO3 which are not accessible in the bulk. The sign of the misfit strain governs the stability of an octahedral "breathing" distortion, which, in turn, produces an emergent charge-ordered ground state with an altered ligand-hole density and bond covalency. Control of this new mechanism opens a pathway to rational orbital engineering, providing a platform for artificially designed Mott materials. 相似文献
43.
We report the implementation of a 3-qubit quantum error-correction code on a quantum information processor realized by the magnetic resonance of carbon nuclei in a single crystal of malonic acid. The code corrects for phase errors induced on the qubits due to imperfect decoupling of the magnetic environment represented by nearby spins, as well as unwanted evolution under the internal Hamiltonian. We also experimentally demonstrate sufficiently high-fidelity control to implement two rounds of quantum error correction. This is a demonstration of state-of-the-art control in solid state nuclear magnetic resonance, a leading test bed for the implementation of quantum algorithms. 相似文献
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Cecelia M. DuBray Cody L. Gerber Ryan D. McCulla Angie J. Oakland Keith D. Schwartz Robert Eliason Jay H. Brown 《Journal of Physical Organic Chemistry》2010,23(12):1196-1201
The ring inversion process for a series of 3,5‐dialkyl‐1‐oxa‐3,5‐diazacyclohexanes was studied using proton dynamic nuclear magnetic resonance (1H DNMR) spectroscopy in conjunction with semiempirical calculations. At low temperature, the ring methylene protons decoalesced into two AB spin systems in a 2:1 ratio. Lineshape simulations of the DNMR spectra provided first‐order rate constants for magnetic exchange. The energy barrier for each inversion reaction was calculated from the respective rate constants. In general, as the size of the N‐alkyl group increased, the barrier to ring inversion decreased. A similar trend was seen in semiempirical calculations that modeled the ring inversion process. Copyright © 2010 John Wiley & Sons, Ltd. 相似文献
46.
G. A. Appignanesi J. A. Rodriguez Fris F. Sciortino 《The European physical journal. E, Soft matter》2009,29(3):305-310
The picture of liquid water as consisting of a mixture of molecules of two different structural states (structured, low-density
molecules and unstructured, high-density ones) represents a belief that has been around for long time awaiting for a conclusive
validation. While in the last years some indicators have indeed provided certain evidence for the existence of structurally
different “species”, a more definite bimodality in the distribution function of a sound structural quantity would be desired.
In this context, our present work combines the use of a structural parameter with a minimization technique to yield neat bimodal
distributions in a temperature range within the supercooled liquid regime, thus clearly revealing the presence of two populations
of differently structured water molecules. Furthermore, we elucidate the role of the inter-conversion between the identified
two kinds of states for the dynamics of structural relaxation, thus linking structural information to dynamics, a long-standing
issue in glassy physics. 相似文献
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E. Rodriguez E. Jimenez G.J. Jacob A.A.R. Neves C.L. Cesar L.C. Barbosa 《Physica E: Low-dimensional Systems and Nanostructures》2005,26(1-4):361
Multilayer PbTe quantum dots (QDs) and SiO2 were grown by pulsed laser deposition (PLD) and Plasma enhanced chemical vapor deposition (PECVD) techniques. The crystalline structure, QD size and size dispersion were observed by high-resolution transmission electron microscopy (HRTEM) measurements. This technique allows one to grow PbTe QDs as small as 1.8 nm diameter and 0.6 nm size dispersion. The whole structure can be used in a Fabry–Perot cavity for an optical device operating at the mid-infrared region. 相似文献