1,158 research outputs found
A Guide to Display Provider Quality Information and Involving Consumers in Generating Provider Ratings for Consumer Driven Health Plans Web Site
Provider’s quality information is one of the most important pieces of information that a consumer seeks out when searching for a health care provider. Most often, a consumer finds a provider by word of mouth from friends or relatives. This approach has its benefit but often times it does not work because each individual consumer has his or her own priority and likings. The ideal approach would be to have a web tool that provides quality ratings for providers from claim information as well as from consumer feedback. Current tools in the market do not involve the consumer intricately enough to generate provider ratings. These tools also do not provide adequate information about providers upon which a user can make an informed decision regarding providers for their treatments.
This paper will discuss a prototype web user interface(UI) where a consumer can lookup a provider by various criteria and view quality ratings information. A process will be outlined on how to involve the consumer in generating provider ratings. Quality metrics will be suggested upon which quality ratings could be assigned to health care providers in order to aid the consumer in the decision making process
Design and Development of an Energy Efficient Multimedia Cloud Data Center with Minimal SLA Violation
Multimedia computing (MC) is rising as a nascent computing paradigm to process multimedia applications and provide efficient multimedia cloud services with optimal Quality of Service (QoS) to the multimedia cloud users. But, the growing popularity of MC is affecting the climate. Because multimedia cloud data centers consume an enormous amount of energy to provide services, it harms the environment due to carbon dioxide emissions. Virtual machine (VM) migration can effectively address this issue; it reduces the energy consumption of multimedia cloud data centers. Due to the reduction of Energy Consumption (EC), the Service Level Agreement violation (SLAV) may increase. An efficient VM selection plays a crucial role in maintaining the stability between EC and SLAV. This work highlights a novel VM selection policy based on identifying the Maximum value among the differences of the Sum of Squares Utilization Rate (MdSSUR) parameter to reduce the EC of multimedia cloud data centers with minimal SLAV. The proposed MdSSUR VM selection policy has been evaluated using real workload traces in CloudSim. The simulation result of the proposed MdSSUR VM selection policy demonstrates the rate of improvements of the EC, the number of VM migrations, and the SLAV by 28.37%, 89.47%, and 79.14%, respectively
Josephson Coupling in the Dissipative State of a Thermally Hysteretic -SQUID
Micron-sized superconducting interference devices (-SQUIDs) based on
constrictions optimized for minimizing thermal runaway are shown to exhibit
voltage oscillations with applied magnetic flux despite their hysteretic
behavior. We explain this remarkable feature by a significant supercurrent
contribution surviving deep into the resistive state, due to efficient heat
evacuation. A resistively shunted junction model, complemented by a thermal
balance determining the amplitude of the critical current, describes well all
experimental observations, including the flux modulation of the (dynamic)
retrapping current and voltage by introducing a single dimensionless parameter.
Thus hysteretic -SQUIDs can be operated in the voltage read-out mode with
a faster response. The quantitative modeling of this regime incorporating both
heating and phase dynamics paves the way for further optimization of
-SQUIDs for nano-magnetism.Comment: 10 pages, 11 figures, Revise
Large sets near idempotent and its product
Tootkaboni and Vahed introduced the notion of some large sets near idempotent
along with some combinatorial properties. We characterize when the finite
Cartesian product of central sets near idempotent is central near idempotent.
Moreover, we provide a partial characterization for the infinite Cartesian
product of the same. We then study the abundance of some large sets near
idempotent. We also investigate the effect of tensor product near zero.
Finally, as an application we provide a characterization of members of
polynomials (with constant term 0) evaluated at idempotents in a near zero
semigroup.Comment: arXiv admin note: text overlap with arXiv:2201.0907
Controlling hysteresis in superconducting constrictions with a resistive shunt
We demonstrate control of the thermal hysteresis in superconducting
constrictions by adding a resistive shunt. In order to prevent thermal
relaxation oscillations, the shunt resistor is placed in close vicinity of the
constriction, making the inductive current-switching time smaller than the
thermal equilibration time. We investigate the current-voltage characteristics
of the same constriction with and without the shunt-resistor. The widening of
the hysteresis-free temperature range is explained on the basis of a simple
model.Comment: 6 pages, 7 figures, including Supplementary Informatio
Noise-adapted qudit codes for amplitude-damping noise
Quantum error correction (QEC) plays a critical role in preventing
information loss in quantum systems and provides a framework for reliable
quantum computation. Identifying quantum codes with nice code parameters for
physically motivated noise models remains an interesting challenge. Going
beyond qubit codes, here we propose a class of qudit error correcting codes
tailored to protect against amplitude-damping noise. Specifically, we construct
a class of four-qudit codes that satisfies the error correction conditions for
all single-qudit and a few two-qudit damping errors up to the leading order in
the damping parameter . We devise a protocol to extract syndromes that
identify this set of errors unambiguously, leading to a noise-adapted recovery
scheme that achieves a fidelity loss of \cO(\gamma^{2}). For the case,
our QEC scheme is identical to the known example of the -qubit code and the
associated syndrome-based recovery.
We also assess the performance of our class of codes using the Petz recovery
map and note some interesting deviations from the qubit case
Operator correlations in a quenched non-Hermitian Luttinger liquid
We study operator correlations of a spinful Luttinger liquid after
introducing a non-Hermitian interaction quench, yielding supersonic modes and
dominant superconducting correlations as signatures of the non-unitary dynamics
as well as spin-charge separation. A comparative analysis with the Hermitian
counterpart, i.e, when the quench is Hermitian, shows a significant difference
in the behavior of the model. We derive exact expressions for different
operator correlations and show that the superconducting correlations decay
slower than the charge and spin-density wave correlations, especially, within
the short-time limit, and at the long-time limit all the operator correlations
merge differed only by phase factors in the case of non-hermitian interaction
quench whereas they do not merge in the case of Hermitian interaction quench.
In both cases known Luttinger liquid universality is retained at the long time
limit. We also analyze how the dynamics of operator correlations vary in the
presence of anisotropy in the quenching parameters.Comment: 15 pages, comments welcom
CoinPress: Practical Private Mean and Covariance Estimation
We present simple differentially private estimators for the mean and
covariance of multivariate sub-Gaussian data that are accurate at small sample
sizes. We demonstrate the effectiveness of our algorithms both theoretically
and empirically using synthetic and real-world datasets---showing that their
asymptotic error rates match the state-of-the-art theoretical bounds, and that
they concretely outperform all previous methods. Specifically, previous
estimators either have weak empirical accuracy at small sample sizes, perform
poorly for multivariate data, or require the user to provide strong a priori
estimates for the parameters.Comment: Code is available at https://github.com/twistedcubic/coin-pres
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