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Paper Citation Record · LEDGER

Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory

As of 21 August 2026, this Paper Citation Record lists 34 of 34 outbound references and 0 inbound Pith citation observations for arXiv:2607.26479.

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pith.paper-citation-record.v1
2607.26479 v1

Coverage vector

measured 34 of 34 reference resolution

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Pith citing papers itemized under the disclosed page cap.

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Reference resolution

34 of 34 outbound references displayed

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Outbound references

Observation 3b3e707f-92e3-4e24-8071-51a6f9cecc24 · outbound

This paper cites Accelerated methods for direct computation of fusion alpha particle losses within, stellarator optimization.

Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory Accelerated methods for direct computation of fusion alpha particle losses within, stellarator optimization

Reference 1

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Observation b036bd14-4a7a-4645-88d2-a8eb4326dd3e · outbound

This paper cites Instantaneous control strategies for magnetically confined fusion plasma.

Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory Instantaneous control strategies for magnetically confined fusion plasma

Reference 2

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Observation 8b578bcc-3f4e-4d7d-9742-e5dacc457bc8 · outbound

This paper cites Robust feedback control of collisional plasma dynamics in presence of uncertainties.

Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory Robust feedback control of collisional plasma dynamics in presence of uncertainties

Reference 3

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Observation 1c8fe3e7-70bb-496a-8d5f-4adaeccf0949 · outbound

This paper cites On the stabilization of a kinetic model by feedback-like control fields in a Monte Carlo framework.

Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory On the stabilization of a kinetic model by feedback-like control fields in a Monte Carlo framework

Reference 4

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Observation f9ff548d-5a94-4e20-a83d-c58cdca01ec7 · outbound

This paper cites Controlling a Vlasov–Poisson Plasma by a Particle-in-Cell Method Based on a Monte Carlo Framework.

Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory Controlling a Vlasov–Poisson Plasma by a Particle-in-Cell Method Based on a Monte Carlo Framework

Reference 5

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Observation 825ba809-ef91-4490-aa80-e7a5443fe6b6 · outbound

This paper cites Foundations of nonlinear gyrokinetic theory.

Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory Foundations of nonlinear gyrokinetic theory

Reference 6

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Observation 9b61fc9e-58fb-48e0-bfec-9dcd6db0e192 · outbound

This paper cites Hamiltonian theory of guiding-center motion.

Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory Hamiltonian theory of guiding-center motion

Reference 7

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Observation 52795ae3-4062-47b4-a610-5106955cd2c9 · outbound

This paper cites New York, NY: Springer, 1984.

Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory New York, NY: Springer, 1984

Reference 8

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Observation f4d9dd7a-6342-430a-b587-b671c3724706 · outbound

This paper cites Semi-Lagrangian SA V method for Vlasov-Maxwell equations.

Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory Semi-Lagrangian SA V method for Vlasov-Maxwell equations

Reference 9

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Observation 1b1497ee-44ff-4b4e-ac7d-4518f239cedc · outbound

This paper cites Conservative semi-Lagrangian schemes for Vlasov equations.

Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory Conservative semi-Lagrangian schemes for Vlasov equations

Reference 10

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Observation 4e749c39-cc3b-409e-a854-e918da7ee39b · outbound

This paper cites Control of kinetic plasma instabilities by laser fields.

Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory Control of kinetic plasma instabilities by laser fields

Reference 11

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Observation b23ee547-5e06-4942-a2d8-2eb1c90c308b · outbound

This paper cites Magnetic control of tokamak plasmas through deep reinforcement learning.

Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory Magnetic control of tokamak plasmas through deep reinforcement learning

Reference 12

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Observation 15606e3d-8d7d-49d2-884c-502baed43f73 · outbound

This paper cites Stabilization of beam heated plasmas by beam modulation.

Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory Stabilization of beam heated plasmas by beam modulation

Reference 13

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Observation b028974b-a762-4cdf-ad88-b2700a41d95a · outbound

This paper cites Control of instability in a Vlasov- Poisson system through an external electric field.

Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory Control of instability in a Vlasov- Poisson system through an external electric field

Reference 14

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Observation 3db5daeb-7d38-49bd-a117-89ed8f826a4a · outbound

This paper cites Suppressing instability in a Vlasov–Poisson system by an external electric field through constrained optimization.

Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory Suppressing instability in a Vlasov–Poisson system by an external electric field through constrained optimization

Reference 15

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Observation 1e1a41b6-85e5-4d76-a566-643d639cca0e · outbound

This paper cites A semi-Lagrangian discontinuous Galerkin method for drift-kinetic simulations on GPUs.

Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory A semi-Lagrangian discontinuous Galerkin method for drift-kinetic simulations on GPUs

Reference 16

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Observation 225d468e-792b-49d3-b2ee-39f776973fcb · outbound

This paper cites Kinetic scrape off layer simulations with semi-Lagrangian discontinuous Galerkin schemes.

Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory Kinetic scrape off layer simulations with semi-Lagrangian discontinuous Galerkin schemes

Reference 17

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Observation 88d877f6-8d09-49b0-8372-419d4267fcf4 · outbound

This paper cites Convergence Analysis of a Discontinuous Galerkin/S- trang Splitting Approximation for the Vlasov–Poisson Equations.

Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory Convergence Analysis of a Discontinuous Galerkin/S- trang Splitting Approximation for the Vlasov–Poisson Equations

Reference 18

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Observation a5025f79-62ba-403d-9dae-d3bdd3a9baa4 · outbound

This paper cites Conservative Numerical Schemes for the Vlasov Equation.

Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory Conservative Numerical Schemes for the Vlasov Equation

Reference 19

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Observation a0f349f7-6386-456e-aa76-e330a9a88924 · outbound

This paper cites What metric to optimize for sup- pressing instability in a Vlasov-Poisson system?.

Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory What metric to optimize for sup- pressing instability in a Vlasov-Poisson system?

Reference 20

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This paper cites Hazeltine and James D.

Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory Hazeltine and James D

Reference 21

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Observation 52d9c3a1-59ec-4159-835c-7b4191426f28 · outbound

This paper cites An implicit, conservative electrostatic particle-in-cell algorithm for paraxial magnetic nozzles.

Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory An implicit, conservative electrostatic particle-in-cell algorithm for paraxial magnetic nozzles

Reference 22

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Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory Unresolved cited work

Reference 23

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This paper cites Loss-cone stabilization in rotating mirrors: thresholds and thermodynamics.

Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory Loss-cone stabilization in rotating mirrors: thresholds and thermodynamics

Reference 24

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Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory Monte Carlo Gradient in Optimization Constrained by Radiative Transport Equation

Reference 25

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Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory Dynamical feedback control with operator learning for the Vlasov-Poisson system

Reference 26

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Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory Collisional losses of electrons from an adiabatic trap in a plasma with a positive potential

Reference 27

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Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory The magnetic mirror approach to fusion

Reference 28

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Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory The semi-Lagrangian method for the numerical resolution of the Vlasov equation

Reference 30

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Observation 4588fec4-12fc-4aff-8361-ec28806775c1 · outbound

This paper cites Numerical Analysis of Fluid Estimation for Source Terms in Neutral Particle Simulations.

Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory Numerical Analysis of Fluid Estimation for Source Terms in Neutral Particle Simulations

Reference 31

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Observation 79c9845a-2071-45e3-922d-d75649baffec · outbound

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Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory Drift-kinetic PIC simulations of plasma flow and energy transport in the magnetic mirror configuration

Reference 32

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Observation bc2f6b93-d7d9-4548-a44f-6336f0ac3223 · outbound

This paper cites Complete quasilinear model for the acceleration-driven lower hybrid drift instability and a computational assessment of its validity.

Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory Complete quasilinear model for the acceleration-driven lower hybrid drift instability and a computational assessment of its validity

Reference 33

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Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory Unresolved cited work

Reference 34

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This paper cites Low-dimensional geometry learning for turbulence prediction in optimized stellarators.

Kinetic Optimization of Magnetic Mirror Confinement: Beyond Classical Loss-Cone Theory Low-dimensional geometry learning for turbulence prediction in optimized stellarators

Reference 2026

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