2,248 research outputs found
Probing the strength of infants' preference for helpers over hinderers: two replication attempts of Hamlin and Wynn (2011)
Several studies indicate that infants prefer individuals who act prosocially over those
who act antisocially toward unrelated third parties. In the present study, we focused on a
paradigm published by Kiley Hamlin and Karen Wynn in 2011. In this study, infants were
habituated to a live puppet show in which a protagonist tried to open a box to retrieve a toy
placed inside. The protagonist was either helped by a second puppet (the “Helper”), or hindered by a third puppet (the “Hinderer”). At test, infants were presented with the Helper and the Hinderer, and encouraged to reach for one of them. In the original study, 75% of 9-month-olds selected the Helper, arguably demonstrating a preference for prosocial over antisocial individuals. We conducted two studies with the aim of replicating this result. Each
attempt was performed by a different group of experimenters. Study 1 followed the methods
of the published study as faithfully as possible. Study 2 introduced slight modifications to the
stimuli and the procedure following the guidelines generously provided by Kiley Hamlin and
her collaborators. Yet, in our replication attempts, 9-month-olds’ preference for helpers over hinderers did not differ significantly from chance (62.5% and 50%, respectively, in Studies 1 and 2). Two types of factors could explain why our results differed from those of Hamlin and Wynn: minor methodological dissimilarities (in procedure, materials, or the population
tested), or the effect size being smaller than originally assumed. We conclude that fine
methodological details that are crucial to infants’
success in this task need to be identified to
ensure the replicability of the original result
Evolution of the Fermi surface of BiTeCl with pressure
We report measurements of Shubnikov-de Haas oscillations in the giant Rashba
semiconductor BiTeCl under applied pressures up to ~2.5 GPa. We observe two
distinct oscillation frequencies, corresponding to the Rashba-split inner and
outer Fermi surfaces. BiTeCl has a conduction band bottom that is split into
two sub-bands due to the strong Rashba coupling, resulting in two
spin-polarized conduction bands as well as a Dirac point. Our results suggest
that the chemical potential lies above this Dirac point, giving rise to two
Fermi surfaces. We use a simple two-band model to understand the pressure
dependence of our sample parameters. Comparing our results on BiTeCl to
previous results on BiTeI, we observe similar trends in both the chemical
potential and the Rashba splitting with pressure.Comment: 6 pages, 5 figure
Studies of superconductivity and structure for CaC6 to pressures above 15 GPa
The dependence of the superconducting transition temperature Tc of CaC6 has
been determined as a function of hydrostatic pressure in both helium-loaded gas
and diamond-anvil cells to 0.6 and 32 GPa, respectively. Following an initial
increase at the rate +0.39(1) K/GPa, Tc drops abruptly from 15 K to 4 K at 10
GPa. Synchrotron x-ray measurements to 15 GPa point to a structural transition
near 10 GPa from a rhombohedral to a higher symmetry phase
Superconductivity in LnFePO (Ln = La, Pr, and Nd) single crystals
Single crystals of the compounds LaFePO, PrFePO, and NdFePO have been
prepared by means of a flux growth technique and studied by electrical
resistivity, magnetic susceptibility and specific heat measurements. We have
found that PrFePO and NdFePO display superconductivity with values of the
superconducting critical temperature T_c of 3.2 K and 3.1 K, respectively. The
effect of annealing on the properties of LaFePO, PrFePO, and NdFePO is also
reported. The LnFePO (Ln = lanthanide) compounds are isostructural with the
LnFeAsO_{1-x}F_x compounds that become superconducting with T_c values as high
as 55 K for Ln = Sm. A systematic comparison of the occurrence of
superconductivity in the series LnFePO and LnFeAsO_{1-x}F_x points to a
possible difference in the origin of the superconductivity in these two series
of compounds.Comment: submitted to the New Journal of Physic
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