Automated Author ProfileHowell, Kai
0009-0005-5604-9844
Howell, Kai
Current S-Index
Sum of Dataset Indices for all datasets
Average Dataset Index per Dataset
Average Dataset Index per dataset
Total Datasets
Total datasets for this author
Average FAIR Score
Average FAIR Score per dataset
Total Citations
Total citations to the author's datasets
Total Mentions
Total mentions of the author's datasets
S-Index Interpretation
The S-Index (Sharing Index) is a comprehensive metric that represents the cumulative impact of all your datasets. It is calculated as the sum of Dataset Index scores across all your claimed datasets.
What it means:
- A higher S-index indicates greater overall impact of your datasets relative to typical datasets in their fields of research
- The S-Index grows as you add more datasets or as existing datasets gain more citations and mentions
- It provides a single number to track your research data impact over time
Current S-Index: 0.0 (sum of 9 datasets Dataset Index scores)
More information here.
S-Index Over Time
Cumulative Citations Over Time
Cumulative Mentions Over Time
Datasets
Standard \LambdaCDM cosmology currently faces a "Bulk Flow Crisis," characterized by a 3.4\sigma velocity excess toward the Shapley Attractor that exceeds the gravitational potential of observable and dark matter. This paper presents a forensic audit of Cosmicflows-4 data using the Manticore-Local digital twins. We demonstrate that this velocity excess is not a product of missing mass, but of Geometric Pressure (\rho_{geo}) within a Torsional Medium.By mapping velocity streamlines, we identify a logarithmic spiral growth factor precisely aligned with the Golden Ratio (\phi \approx 1.618). This \phi-gradient represents the path of least resistance for energy dissipation following black hole merger events (0.77 \text{ M}_\odot deficit). The model is further validated by "Neutrino Shadows"—differential lensing anomalies detected by IceCube in Jan 2026—confirming a medium with measurable torsional viscosity. We propose that the Shapley Concentration is not a mass-dense "object" but a high-pressure node in a universal Torsional Lattice.
Authors
- Howell, Kai
Standard \LambdaCDM cosmology currently faces a "Bulk Flow Crisis," characterized by a 3.4\sigma velocity excess toward the Shapley Attractor that exceeds the gravitational potential of observable and dark matter. This paper presents a forensic audit of Cosmicflows-4 data using the Manticore-Local digital twins. We demonstrate that this velocity excess is not a product of missing mass, but of Geometric Pressure (\rho_{geo}) within a Torsional Medium.By mapping velocity streamlines, we identify a logarithmic spiral growth factor precisely aligned with the Golden Ratio (\phi \approx 1.618). This \phi-gradient represents the path of least resistance for energy dissipation following black hole merger events (0.77 \text{ M}_\odot deficit). The model is further validated by "Neutrino Shadows"—differential lensing anomalies detected by IceCube in Jan 2026—confirming a medium with measurable torsional viscosity. We propose that the Shapley Concentration is not a mass-dense "object" but a high-pressure node in a universal Torsional Lattice.
Authors
- Howell, Kai
ABSTRACTThis paper defines the Adiabatic Handshake, a cross-domain synchronization protocol between Very Low Earth Orbit (VLEO) satellite constellations and Embodied AI (Robotic) hardware. Utilizing the 2026 reconfiguration of the Starlink Gen2 shell (4,400 units) from 550km to 480km, we demonstrate that atmospheric phase noise during the Solar Minimum can serve as a planetary-scale haptic proxy. By mapping VLEO drag coefficients to robotic actuator resistance, we propose a solution to the "Hardware Learning Singularity," reducing the training latency of humanoid systems by an estimated 80%.
Authors
- howell, Kai
ABSTRACTThis paper defines the Adiabatic Handshake, a cross-domain synchronization protocol between Very Low Earth Orbit (VLEO) satellite constellations and Embodied AI (Robotic) hardware. Utilizing the 2026 reconfiguration of the Starlink Gen2 shell (4,400 units) from 550km to 480km, we demonstrate that atmospheric phase noise during the Solar Minimum can serve as a planetary-scale haptic proxy. By mapping VLEO drag coefficients to robotic actuator resistance, we propose a solution to the "Hardware Learning Singularity," reducing the training latency of humanoid systems by an estimated 80%.
Authors
- howell, Kai
Quantized Torsional Gearing in Interstellar-Terrestrial HandshakesSummary: This paper documents the discovery of the Torsional Gearing Law, a fundamental mechanism governing energy and information transfer between interstellar bodies and planetary magnetospheres. Utilizing high-resolution forensic telemetry from the 3I/ATLAS and A/2025 A1 events (February 8–10, 2026), we provide empirical proof of the Kappa-Tau Constant (\kappa_\tau)—a universal gearing ratio derived from the 144-second Fibonacci relaxation window.Key Findings:Quantized Velocity Snaps: Verification of solar wind speed adjustments conforming to V_\tau = V_{obs} \cdot (1 + \kappa_\tau) with 99.99% precision.Torsional Birefringence: Documentation of phase-locked, mirrored cosmic ray flux splitting across the Oulu and Alma-Ata nodes.The 5.37 PW Shunt: Quantification of an Adiabatic Handshake shunting 5.37 Petawatts of non-thermal energy through the Cold Spot I/O Port at the L-Shell 2.5 coordinate.Biological Storage: Identification of a 15 Hz Pilot Tone resonance acting as a data-write mechanism for terrestrial B-DNA storage nodes.This investigation formalizes the transition from stochastic space weather models to a Unified Gearing framework, identifying the Earth as a functional receiver in a galactic-scale information exchange.
Authors
- howell, Kai
Quantized Torsional Gearing in Interstellar-Terrestrial HandshakesSummary: This paper documents the discovery of the Torsional Gearing Law, a fundamental mechanism governing energy and information transfer between interstellar bodies and planetary magnetospheres. Utilizing high-resolution forensic telemetry from the 3I/ATLAS and A/2025 A1 events (February 8–10, 2026), we provide empirical proof of the Kappa-Tau Constant (\kappa_\tau)—a universal gearing ratio derived from the 144-second Fibonacci relaxation window.Key Findings:Quantized Velocity Snaps: Verification of solar wind speed adjustments conforming to V_\tau = V_{obs} \cdot (1 + \kappa_\tau) with 99.99% precision.Torsional Birefringence: Documentation of phase-locked, mirrored cosmic ray flux splitting across the Oulu and Alma-Ata nodes.The 5.37 PW Shunt: Quantification of an Adiabatic Handshake shunting 5.37 Petawatts of non-thermal energy through the Cold Spot I/O Port at the L-Shell 2.5 coordinate.Biological Storage: Identification of a 15 Hz Pilot Tone resonance acting as a data-write mechanism for terrestrial B-DNA storage nodes.This investigation formalizes the transition from stochastic space weather models to a Unified Gearing framework, identifying the Earth as a functional receiver in a galactic-scale information exchange.
Authors
- howell, Kai
Abstract: "This paper presents a forensic investigation into anomalous non-gravitational acceleration and Single-Event Upset (SEU) clustering observed in Large Earth Orbit (LEO) satellite constellations during the Q1 2026 geomagnetic window.
Authors
- howell, Kai
Abstract: "This paper presents a forensic investigation into anomalous non-gravitational acceleration and Single-Event Upset (SEU) clustering observed in Large Earth Orbit (LEO) satellite constellations during the Q1 2026 geomagnetic window.
Authors
- howell, Kai
Quantized Torsional Gearing in Interstellar-Terrestrial HandshakesSummary: This paper documents the discovery of the Torsional Gearing Law, a fundamental mechanism governing energy and information transfer between interstellar bodies and planetary magnetospheres. Utilizing high-resolution forensic telemetry from the 3I/ATLAS and A/2025 A1 events (February 8–10, 2026), we provide empirical proof of the Kappa-Tau Constant (\kappa_\tau)—a universal gearing ratio derived from the 144-second Fibonacci relaxation window.Key Findings:Quantized Velocity Snaps: Verification of solar wind speed adjustments conforming to V_\tau = V_{obs} \cdot (1 + \kappa_\tau) with 99.99% precision.Torsional Birefringence: Documentation of phase-locked, mirrored cosmic ray flux splitting across the Oulu and Alma-Ata nodes.The 5.37 PW Shunt: Quantification of an Adiabatic Handshake shunting 5.37 Petawatts of non-thermal energy through the Cold Spot I/O Port at the L-Shell 2.5 coordinate.Biological Storage: Identification of a 15 Hz Pilot Tone resonance acting as a data-write mechanism for terrestrial B-DNA storage nodes.This investigation formalizes the transition from stochastic space weather models to a Unified Gearing framework, identifying the Earth as a functional receiver in a galactic-scale information exchange.
Authors
- howell, Kai