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Ritesh Dwivedi

Publications and source records attributed to Ritesh Dwivedi.

4 recordsLinked to original sources

A Divisor-Sum Analogue of the Collatz Map

Let $σ$ denote the sum-of-divisors function and let $\mathcal{R}$ send an odd integer $n$ to $σ(n)$ and an even integer $n$ to $n/2$. We conjecture that every orbit of $\mathcal{R}$ reaches $1$; this implies that there is no odd $2^{k}$-perfect number for any $k \ge 1$. We prove a pointwise descent estimate for the map $T$ induced by $\mathcal{R}$ on the odd integers, and show that a single application of $T$ divides almost every odd $n$ by $(\log n)^{2\log 2-\varepsilon}$, for every fixed $\varepsilon>0$. The estimate does not iterate, and we determine what is missing.

math.NT

Dynamics of quantum turbulence in axially rotating thermal counterflow

Generation, statistically steady state, and temporal decay of axially rotating thermal counterflow of superfluid $^4$He (He~II) in a square channel is probed using the second sound attenuation technique, measuring the density of quantized vortex lines. The array of rectilinear quantized vortices created by rotation strongly affects the development of quantum turbulence. At relatively slow angular velocities, the type of instability responsible for the destruction of the laminar counterflow qualitatively changes: the growth of seed vortex loops pinned on the channel wall becomes gradually replaced by the growth due to Donnelly-Glaberson instability, which leads to rapid growth of helical Kelvin waves on vortices parallel with applied counterflow. The initial transient growth of vortex line density that follows the sudden start of the counterflow appears self-similar, linear in dimensionless time, $Ωt$. We show numerically that Kelvin waves of sufficiently strong amplitude reorient the vortices into more flattened shapes, which grow similarly to a free vortex ring. The observed steady state vortex line density at sufficiently high counterflow velocity and its early temporal decay after the counterflow is switched off is not appreciably affected by rotation. It is striking, however, that although the steady state of rotating counterflow is very different from rotating classical grid-generated turbulence, the late temporal decay of both displays similar features: the decay exponent decreases with the rotation rate $Ω$ from -3/2 towards approximately -0.7, typical for two-dimensional turbulence, consistent with the transition to bidirectional cascade.

physics.flu-dyn

Detection of Quantized Vortices using Fourth Sound Attenuation

Superfluid helium confined to nanofluidic systems is emerging as an important system for studies of two-dimensional turbulence and as the basis for novel quantum technologies. In fully enclosed nanofluidic geometries only the fourth sound can propagate, which we show can be used for probing quantized vortices pinned in well-defined slab geometry. We show that similarly to well-established second sound attenuation, fourth sound attenuation can be used to infer the number of quantized vortices in a unit area. We experimentally verify fourth sound attenuation as a probe of vortex line density by injecting a known number of quantized vortices into a nanofluidic slab using a rotating cryostat.

cond-mat.other