<?xml version="1.0" encoding="UTF-8"?><rss version="2.0"><channel><title>Power for Solar</title><link>https://powerforsolar.com</link><description>Latest solar energy research papers on photovoltaic technology, solar panel efficiency, perovskite cells, energy storage and renewable energy engineering.</description><item><title><![CDATA[Progress of major emitters towards climate targets: 2025 Update]]></title><link>https://powerforsolar.com/papers/progress-of-major-emitters-towards-climate-targets-2025-update</link><description><![CDATA[A solar energy research paper on Progress of major emitters towards climate targets: 2025 Update.]]></description></item><item><title><![CDATA[Source data for: Prussian blue frameworks regulate ion dynamics for stable and scalable perovskite solar cells]]></title><link>https://powerforsolar.com/papers/source-data-for-prussian-blue-frameworks-regulate-ion-dynamics-for-stable-and-scalable-perovskite-solar-cells</link><description><![CDATA[A solar energy research paper on Source data for: Prussian blue frameworks regulate ion dynamics for stable and scalable perovskite solar cells.]]></description></item><item><title><![CDATA[Impact of the Single-Layer Anti-Reflective Coating (Slarc) on the Photovoltaic Properties of ZnO/AlGaAs/Si Solar Cells]]></title><link>https://powerforsolar.com/papers/impact-of-the-single-layer-anti-reflective-coating-slarc-on-the-photovoltaic-properties-of-zno-algaas-si-solar-cells</link><description><![CDATA[A solar energy research paper on Impact of the Single-Layer Anti-Reflective Coating (Slarc) on the Photovoltaic Properties of ZnO/AlGaAs/Si Solar Cells.]]></description></item><item><title><![CDATA[High-Performance Solar Cells Systems with ZnO+ Spiro-OMeTAD Perovskite- NiO layers]]></title><link>https://powerforsolar.com/papers/high-performance-solar-cells-systems-with-zno-spiro-ometad-perovskite-nio-layers</link><description><![CDATA[A solar energy research paper on High-Performance Solar Cells Systems with ZnO+ Spiro-OMeTAD Perovskite- NiO layers.]]></description></item><item><title><![CDATA[Multifunctional Dye Interlayer Enhances the Power Conversion Efficiency of Cs2AgBiBr6 Lead-Free Inorganic Perovskite Solar Cell in a SCAPS-1D Simulation]]></title><link>https://powerforsolar.com/papers/multifunctional-dye-interlayer-enhances-the-power-conversion-efficiency-of-cs2agbibr6-lead-free-inorganic-perovskite-solar-cell-in-a-scaps-1d-simulation</link><description><![CDATA[A solar energy research paper on Multifunctional Dye Interlayer Enhances the Power Conversion Efficiency of Cs2AgBiBr6 Lead-Free Inorganic Perovskite Solar Cell in a SCAPS-1D Simulation.]]></description></item><item><title><![CDATA[A novel demand response framework for the optimal design of hydrogen–ammonia hybrid microgrids]]></title><link>https://powerforsolar.com/papers/a-novel-demand-response-framework-for-the-optimal-design-of-hydrogen-ammonia-hybrid-microgrids</link><description><![CDATA[A solar energy research paper on A novel demand response framework for the optimal design of hydrogen–ammonia hybrid microgrids.]]></description></item><item><title><![CDATA[Fabrication and characterization of MnxZn(1-x)Oδ (x = 0.02, 0.04, 0.06, 0.08 & 0.10) as a buffer layer for CZTS thin film solar cells]]></title><link>https://powerforsolar.com/papers/fabrication-and-characterization-of-mnxzn-1-x-o-x-0-02-0-04-0-06-0-08-0-10-as-a-buffer-layer-for-czts-thin-film-solar-cells</link><description><![CDATA[A solar energy research paper on Fabrication and characterization of MnxZn(1-x)Oδ (x = 0.02, 0.04, 0.06, 0.08 & 0.10) as a buffer layer for CZTS thin film solar cells.]]></description></item><item><title><![CDATA[Hayden--Preskill recovery at finite temperature on a quantum processor: dynamics and initial state from the SYK model]]></title><link>https://powerforsolar.com/papers/hayden-preskill-recovery-at-finite-temperature-on-a-quantum-processor-dynamics-and-initial-state-from-the-syk-model</link><description><![CDATA[A solar energy research paper on Hayden--Preskill recovery at finite temperature on a quantum processor: dynamics and initial state from the SYK model.]]></description></item><item><title><![CDATA[Structure-Preserving Quantum Simulation of Wave Equations on a Trapped-Ion Processor]]></title><link>https://powerforsolar.com/papers/structure-preserving-quantum-simulation-of-wave-equations-on-a-trapped-ion-processor</link><description><![CDATA[A solar energy research paper on Structure-Preserving Quantum Simulation of Wave Equations on a Trapped-Ion Processor.]]></description></item><item><title><![CDATA[X-ray Absorption Variability in NGC 1142: Another Constraint on the Nature of the Torus/Broad-Line Region in Active Galactic Nuclei]]></title><link>https://powerforsolar.com/papers/x-ray-absorption-variability-in-ngc-1142-another-constraint-on-the-nature-of-the-torus-broad-line-region-in-active-galactic-nuclei</link><description><![CDATA[A solar energy research paper on X-ray Absorption Variability in NGC 1142: Another Constraint on the Nature of the Torus/Broad-Line Region in Active Galactic Nuclei.]]></description></item><item><title><![CDATA[Beyond monomial $α$-attractors]]></title><link>https://powerforsolar.com/papers/beyond-monomial-attractors</link><description><![CDATA[A solar energy research paper on Beyond monomial $α$-attractors.]]></description></item><item><title><![CDATA[Uncertainty-Aware Tidal Disruption Event Classification : A Host-Agnostic Probabilistic Random Forest Approach]]></title><link>https://powerforsolar.com/papers/uncertainty-aware-tidal-disruption-event-classification-a-host-agnostic-probabilistic-random-forest-approach</link><description><![CDATA[A solar energy research paper on Uncertainty-Aware Tidal Disruption Event Classification : A Host-Agnostic Probabilistic Random Forest Approach.]]></description></item><item><title><![CDATA[Shallow water models for the dynamics of oscillating water columns]]></title><link>https://powerforsolar.com/papers/shallow-water-models-for-the-dynamics-of-oscillating-water-columns</link><description><![CDATA[A solar energy research paper on Shallow water models for the dynamics of oscillating water columns.]]></description></item><item><title><![CDATA[Dynamical flattening of halo density cusps by Q-ball dark matter]]></title><link>https://powerforsolar.com/papers/dynamical-flattening-of-halo-density-cusps-by-q-ball-dark-matter</link><description><![CDATA[A solar energy research paper on Dynamical flattening of halo density cusps by Q-ball dark matter.]]></description></item><item><title><![CDATA[Redundant moments of non-melonic random tensor models: simplifying the tensor bootstrap]]></title><link>https://powerforsolar.com/papers/redundant-moments-of-non-melonic-random-tensor-models-simplifying-the-tensor-bootstrap</link><description><![CDATA[A solar energy research paper on Redundant moments of non-melonic random tensor models: simplifying the tensor bootstrap.]]></description></item><item><title><![CDATA[Same explosion, many faces: numerical modeling reveals viewing angle as a driver of diversity for core-collapse SNe in binary systems]]></title><link>https://powerforsolar.com/papers/same-explosion-many-faces-numerical-modeling-reveals-viewing-angle-as-a-driver-of-diversity-for-core-collapse-sne-in-binary-systems</link><description><![CDATA[A solar energy research paper on Same explosion, many faces: numerical modeling reveals viewing angle as a driver of diversity for core-collapse SNe in binary systems.]]></description></item><item><title><![CDATA[Exact chiral symmetry with quantum signal processing]]></title><link>https://powerforsolar.com/papers/exact-chiral-symmetry-with-quantum-signal-processing</link><description><![CDATA[A solar energy research paper on Exact chiral symmetry with quantum signal processing.]]></description></item><item><title><![CDATA[Hubbard physics with ultracold polar molecules: on-site interaction energies for shielded molecules]]></title><link>https://powerforsolar.com/papers/hubbard-physics-with-ultracold-polar-molecules-on-site-interaction-energies-for-shielded-molecules</link><description><![CDATA[A solar energy research paper on Hubbard physics with ultracold polar molecules: on-site interaction energies for shielded molecules.]]></description></item><item><title><![CDATA[Graph Neural Network Force Fields for Spin Dynamics in Metallic Magnets]]></title><link>https://powerforsolar.com/papers/graph-neural-network-force-fields-for-spin-dynamics-in-metallic-magnets</link><description><![CDATA[A solar energy research paper on Graph Neural Network Force Fields for Spin Dynamics in Metallic Magnets.]]></description></item><item><title><![CDATA[Search for gravitational waves associated with high-energy neutrinos detected by IceCube during the third observing run of LIGO-Virgo]]></title><link>https://powerforsolar.com/papers/search-for-gravitational-waves-associated-with-high-energy-neutrinos-detected-by-icecube-during-the-third-observing-run-of-ligo-virgo</link><description><![CDATA[A solar energy research paper on Search for gravitational waves associated with high-energy neutrinos detected by IceCube during the third observing run of LIGO-Virgo.]]></description></item></channel></rss>