4 resultados para Limits to arbitrage

em Universidad de Alicante


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Subpixel methods increase the accuracy and efficiency of image detectors, processing units, and algorithms and provide very cost-effective systems for object tracking. Published methods achieve resolution increases up to three orders of magnitude. In this Letter, we demonstrate that this limit can be theoretically improved by several orders of magnitude, permitting micropixel and submicropixel accuracies. The necessary condition for movement detection is that one single pixel changes its status. We show that an appropriate target design increases the probability of a pixel change for arbitrarily small shifts, thus increasing the detection accuracy of a tracking system. The proposal does not impose severe restriction on the target nor on the sensor, thus allowing easy experimental implementation.

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The lack of isolated X-ray pulsars with spin periods longer than 12 s raises the question of where the population of evolved high-magnetic-field neutron stars has gone. Unlike canonical radiopulsars, X-ray pulsars are not subject to physical limits to the emission mechanism nor observational biases against the detection of sources with longer periods. Here we show that a highly resistive layer in the innermost part of the crust of neutron stars naturally limits the spin period to a maximum value of about 10–20 s. This highly resistive layer is expected if the inner crust is amorphous and heterogeneous in nuclear charge, possibly owing to the existence of a nuclear ‘pasta’ phase. Our findings suggest that the maximum period of isolated X-ray pulsars may be the first observational evidence for an amorphous inner crust, whose properties can be further constrained by future X-ray timing missions combined with more detailed models.

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Digital magnetic recording is based on the storage of a bit of information in the orientation of a magnetic system with two stable ground states. Here we address two fundamental problems that arise when this is done on a quantized spin: quantum spin tunneling and backaction of the readout process. We show that fundamental differences exist between integer and semi-integer spins when it comes to both reading and recording classical information in a quantized spin. Our findings imply fundamental limits to the miniaturization of magnetic bits and are relevant to recent experiments where a spin-polarized scanning tunneling microscope reads and records a classical bit in the spin orientation of a single magnetic atom.

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Se recogen, en la primera parte de la ponencia, algunas de las transformaciones que ha conocido la arqueología en los últimos decenios: la ampliación de los límites cronológicos hasta umbrales contemporáneos, la caída del enfoque tradicional que concebía la arqueología como una disciplina ocupada básicamente en trabajar bajo cota 0 y la ampliación de escala del objeto de estudio desde la cultura material mueble y el yacimiento hacia el territorio. En una segunda parte se hace un esfuerzo por redefinir el perfil de la arqueología en la actualidad llevando a cabo una reflexión fundamentalmente ontológica y axiológica, sin renunciar sin embargo a algunas consideraciones de carácter epistemológico. Para terminar, se presenta la “cadena de valor” como herramienta metodológica que sirve mejor que ninguna otra al tratamiento del Patrimonio desde una perspectiva integral e interdisciplinaria.