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Akira Igarashi

Publications and source records attributed to Akira Igarashi.

4 recordsLinked to original sources

Algorithmic Fairness: Not a Purely Technical but Socio-Technical Property

The rapid trend of deploying artificial intelligence (AI) and machine learning (ML) systems in socially consequential domains has raised growing concerns about their trustworthiness, including potential discriminatory behaviours. Research in algorithmic fairness has generated a proliferation of mathematical definitions and metrics, yet persistent misconceptions and limitations -- both within and beyond the fairness community -- limit their effectiveness, such as an unreached consensus on its understanding, prevailing measures primarily tailored to binary group settings, and superficial handling for intersectional contexts. Here we critically remark on these misconceptions and argue that fairness cannot be reduced to purely technical constraints on models; we also examine the limitations of existing fairness measures through conceptual analysis and empirical illustrations, showing their limited applicability in the face of complex real-world scenarios, challenging prevailing views on the incompatibility between accuracy and fairness as well as that among fairness measures themselves, and outlining three worth-considering principles in the design of fairness measures. We believe these findings will help bridge the gap between technical formalisation and social realities and meet the challenges of real-world AI/ML deployment.

cs.LG

Magnetotransport in Weyl semimetal nanowires

We theoretically study the band structure and the electronic transport in the Weyl semimetal nanowires in magnetic fields, and demonstrate that the interplay of the Fermi-arc surface states and the bulk Landau levels plays a crucial role in the magnetotransport. We show that a magnetic field perpendicular to the surface immediately hybridizes the counter-propagating surface modes into a series of dispersionless 0th Landau levels, and it leads to a significant reduction of the traveling modes and a rapid decay of the conductance. On the contrary, a magnetic field parallel to the wire adds linearly-dispersed 0th Landau levels to the traveling modes and increases the conductance.

cond-mat.mes-hall

Quantum dynamics and decoherence in coherently driven one-dimensional double-well system

We numerically study influence of a polychromatic perturbation on wave acket dynamics in one-dimensional double-well potential. It is found that time-dependence of the tunneling probability shows two kinds of the motion typically, coherent oscillation and irregular fluctuation, depending on the perturbation parameters. The coherent motion changes the irregular one as the increase of the strength and/or the number of frequency components of the perturbation. We discuss a relation between our model and decoherence in comparing with the result under stochastic perturbation. Furthermore we compare the quantum fluctuation, tunneling in the quantum dynamics with ones in the semiquantal dynamics.

cond-mat.other

Controllability of Wavepacket Dynamics in Coherently Driven Double-Well Potential

We numerically study the controllability of quantum dynamics in perturbed one-dimensional double-well potential by using an optimal control theory. As the perturbation strength is small the dynamics of the initially localized aussian wavepacket in the right well shows coherent oscillation between the wells like a behavior of instanton. It was found that as the increase of the strength and/or the number of frequency components of the perturbation the coherent motion changes the irregular one with irreversible delocalization of the wavepacket. We investigate the controllability of the system depending on the perturbation parameters and the initial state by focusing mainly on the delocalized state generated in the polychromatically perturbed system. In the relatively long-time control for the Gaussian wavepacket and the delocalized state, we show that it is well-controllable via the first excited state doublet in spite of the perturbation parameters. On the other hand, in the relatively shor-time control we show the difficulty of the control for the delocalized state because of the numerous local minima. Furthermore, it is demonstrated that chaotic phase space structure of the system assists the controllability of the delocalized state.

cond-mat.other