7,297 research outputs found
Free Your Mind: Contemporary Racial Attitudes and Post Racial Theory
The inauguration of the United States first Black President has prompted mass discussions of race relations in America. It is often articulated that America is now in a post-racial society. However, the question still remains: does the election of a Black president demonstrate that America is now a color-blind society? To answer this question, we rely on data collected by PEW (2007). Our results suggest that white and African Americans differ significantly in the extent to which they express post-racial attitudes. Specifically, we find that whites more commonly express post-racial attitudes, claiming that racism and discrimination are rare, in opposition to African American views. On the other hand, blacks are more likely to believe that discrimination still occurs. We further find that whites\u27 post-racial beliefs are significant determinants of their attitudes towards race-related policies, such as affirmative action. Keywords: Race, Obama, Post-racial, Public Opinion, Racial Attitudes, Racial Politics, African American
Distinct subpopulations of enteric neuronal progenitors defined by time of development, sympathoadrenal lineage markers and Mash-1-dependence
Enteric and sympathetic neurons have previously been proposed to be lineally related. We present independent lines of evidence that suggest that enteric neurons arise from at least two lineages, only one of which expresses markers in common with sympathoadrenal cells. In the rat, sympathoadrenal markers are expressed, in the same order as in sympathetic neurons, by a subset of enteric neuronal precursors, which also transiently express tyrosine hydroxylase. If this precursor pool is eliminated in vitro by complement-mediated lysis, enteric neurons continue to develop; however, none of these are serotonergic. In the mouse, the Mash-1â/â mutation, which eliminates sympathetic neurons, also prevents the development of enteric serotonergic neurons. Other enteric neuronal populations, however, including those that contain calcitonin gene related peptide are present. Enteric tyrosine hydroxylase-containing cells co-express Mash-1 and are eliminated by the Mash-1â/â mutation, consistent with the idea that in the mouse, as in the rat, these precursors generate serotonergic neurons. Serotonergic neurons are generated early in development, while calcitonin gene related peptide-containing enteric neurons are generated much later. These data suggest that enteric neurons are derived from at least two progenitor lineages. One transiently expresses sympathoadrenal markers, is Mash-1-dependent, and generates early-born enteric neurons, some of which are serotonergic. The other is Mash-1-independent, does not express sympathoadrenal markers, and generates late-born enteric neurons, some of which contain calcitonin gene related peptide
Control of multiatom entanglement in a cavity
We propose a general formalism for analytical description of multiatomic
ensembles interacting with a single mode quantized cavity field under the
assumption that most atoms remain un-excited on average. By combining the
obtained formalism with the nilpotent technique for the description of
multipartite entanglement we are able to overview in a unified fashion
different probabilistic control scenarios of entanglement among atoms or
examine atomic ensembles. We then apply the proposed control schemes to the
creation of multiatom states useful for quantum information.Comment: 11 pages, 1 figure. Finalized versio
Scalable solid-state quantum processor using subradiant two-atom states
We propose a realization of a scalable, high-performance quantum processor
whose qubits are represented by the ground and subradiant states of effective
dimers formed by pairs of two-level systems coupled by resonant dipole-dipole
interaction. The dimers are implanted in low-temperature solid host material at
controllable nanoscale separations. The two-qubit entanglement either relies on
the coherent excitation exchange between the dimers or is mediated by external
laser fields.Comment: 4 pages, 3 figure
First observation of Bs0 â D*s2+XÎŒ-Îœ decays
Using data collected with the LHCb detector in protonâproton collisions at a centre-of-mass energy of 7 TeV, the semileptonic decays B0sâD+sXÎŒâÎœ and B0sâD0K+XÎŒâÎœ are detected. Two structures are observed in the D0K+ mass spectrum at masses consistent with the known Ds1(2536)+ and Dâs22573)+ mesons. The measured branching fractions relative to the total B0s semileptonic rate are B(B0sâDâ+s2XÎŒâÎœ)/B(B0sâXÎŒâÎœ) = (3.3±1.0±0.4)%, and B(B0sâD+s1XÎŒâÎœ)/B(B0sâXÎŒâÎœ) = (5.4±1.2±0.5)%, where the ïŹrst uncertainty is statistical and the second is systematic. This is the ïŹrst observation of the Dâ+s2 state in B0s decays; we also measure its mass and width
Nonradiative interaction and entanglement between distant atoms
We show that nonradiative interactions between atomic dipoles placed in a
waveguide can give rise to deterministic entanglement at ranges much larger
than their resonant wavelength. The range increases as the dipole-resonance
approaches the waveguide's cutoff frequency, caused by the giant density of
photon modes near cutoff, a regime where the standard (perturbative) Markov
approximation fails. We provide analytical theories for both the Markovian and
non-Markovian regimes, supported by numerical simulations, and discuss possible
experimental realizations.Comment: 9 pages, 2 figure
Measurement of Counting Statistics of Electron Transport in a Tunnel Junction
We present measurements of the time-dependent fluctuations in electrical
current in a voltage-biased tunnel junction. We were able to simultaneously
extract the first three moments of the tunnel current counting statistics.
Detailed comparison of the second and the third moment reveals that counting
statistics is accurately described by the Poissonian distribution expected for
spontaneous current fluctuations due to electron charge discreteness, realized
in tunneling transport at negligible coupling to environment.Comment: bibliography expande
Measurement of the Bs0-Bs0 oscillation frequency ÎŽms in Bs0âDs-(3)Ï decays
The Bs0-Bs0 oscillation frequency ÎŽms is measured with 36 pb-1 of data collected in pp collisions at s=7TeV by the LHCb experiment at the Large Hadron Collider. A total of 1381 Bs0âDs-Ï+ and Bs0âDs-Ï+Ï-Ï + signal decays are reconstructed, with average decay time resolutions of 44 fs and 36 fs, respectively. An oscillation signal with a statistical significance of 4.6Ï is observed. The measured oscillation frequency is ÎŽm s=17.63±0.11(stat)±0.02(syst)ps -1
A model-independent Dalitz plot analysis of B±âDK± with DâK0Sh+hâ (h=Ï,K) decays and constraints on the CKM angle Îł
A binned Dalitz plot analysis of B ±âDK ± decays, with DâKS0Ï+Ï- and DâKS0K+K-, is performed to measure the CP-violating observables x ± and y ± which are sensitive to the CKM angle Îł. The analysis exploits 1.0 fb -1 of data collected by the LHCb experiment. The study makes no model-based assumption on the variation of the strong phase of the D decay amplitude over the Dalitz plot, but uses measurements of this quantity from CLEO-c as input. The values of the parameters are found to be x -=(0.0±4.3±1.5±0.6)Ă10 -2, y -=(2.7±5.2±0.8±2.3)Ă10 -2, x +=(-10.3±4.5±1.8±1.4)Ă10 -2 and y +=(-0.9±3.7±0.8±3.0)Ă10 -2. The first, second, and third uncertainties are the statistical, the experimental systematic, and the error associated with the precision of the strong-phase parameters measured at CLEO-c, respectively. These results correspond to Îł=(44-38+43)°, with a second solution at ÎłâÎł+180°, and r B=0.07±0.04, where r B is the ratio between the suppressed and favoured B decay amplitudes
Generation of macroscopic quantum-superposition states by linear coupling to a bath
We demonstrate through an exactly solvable model that collective coupling to
any thermal bath induces effectively nonlinear couplings in a quantum many-body
(multi-spin) system. The resulting evolution can drive an uncorrelated
large-spin system with high probability into a macroscopic
quantum-superposition state. We discuss possible experimental realizations.Comment: 4 pages, 2 figures, Physical Review Letters (in press
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