The Screened Dewhirst Operator: Geometric Resolution of Rare Electroweak B0 Meson Angular Decays Against CERN LHCb Target Event Streams

{"This":[0,104],"standalone":[1],"technical":[2],"monograph":[3],"explicitly":[4],"details":[5],"the":[6,13,21,36,45,58,82,101,114,127,138,141,147,152,184],"covariant":[7,149],"mathematical":[8],"layout":[9],"loops":[10],"proving":[11],"how":[12],"Screened":[14],"Dewhirst":[15],"Operator":[16],"(Omega_D)":[17],"framework":[18],"natively":[19],"resolves":[20],"long-standing":[22],"4.0-sigma":[23],"rare":[24],"electroweak":[25,90],"B0":[26],"meson":[27],"decay":[28],"angular":[29,119],"anomaly":[30],"(P5'":[31],"observable":[32],"tension)":[33],"recorded":[34],"by":[35],"CERN":[37,191],"LHCb":[38],"and":[39,73,117,168],"CMS":[40],"detector":[41],"collaborations.":[42],"By":[43],"deriving":[44],"system's":[46],"field":[47,76],"equations":[48],"from":[49,171],"an":[50,109],"axiomatic":[51],"Action":[52,56],"Principle":[53],"via":[54],"Least":[55],"minimisation,":[57],"guide":[59],"strips":[60],"away":[61],"speculative,":[62],"unobservable":[63,74],"particle":[64],"extensions":[65],"(such":[66],"as":[67,108],"heavy":[68],"Z'":[69],"bosons":[70],"or":[71],"leptoquarks)":[72],"\\"scalar":[75],"leaks.\\"":[77],"Instead,":[78],"it":[79],"demonstrates":[80],"that":[81,146,164],"extreme":[83],"localized":[84,97],"mass-energy":[85,129],"density":[86],"concentrated":[87],"within":[88],"higher-order":[89],"quantum":[91],"loop":[92],"vertices":[93],"triggers":[94],"a":[95,178],"microscopic,":[96],"disformal":[98],"modification":[99],"of":[100,121,151],"spacetime":[102],"metric.":[103],"local":[105],"shift":[106],"functions":[107],"intrinsic":[110],"geometric":[111],"prism,":[112],"altering":[113],"trajectory":[115],"vectors":[116],"phase-space":[118],"distributions":[120],"exiting":[122],"muon-antimuon":[123],"products":[124],"directly":[125,188],"through":[126],"linear":[128],"translation":[130],"law":[131],"(E":[132],"=":[133,161],"Omega_D":[134],"m":[135],"c^2).":[136],"Crucially,":[137],"text":[139],"provides":[140],"rigorous":[142],"tensor":[143],"calculus":[144],"verifying":[145],"total":[148],"divergence":[150],"system":[153],"remains":[154],"locked":[155],"to":[156],"absolute":[157],"zero":[158],"(Grad_mu":[159],"T^mu,nu":[160],"0),":[162],"ensuring":[163],"energy":[165],"never":[166,169],"disappears":[167],"leaks":[170],"any":[172],"tracker":[173],"domain.":[174],"The":[175],"compendium":[176],"includes":[177],"structured":[179],"experimental":[180],"verification":[181],"index":[182],"cross-examining":[183],"model's":[185],"physical":[186],"invariants":[187],"against":[189],"public":[190],"petabyte":[192],"datasets.":[193]}

Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-08-25
DOI
https://doi.org/10.5281/zenodo.22098238
Primary Topic
Particle physics theoretical and experimental studies
Type
preprint
Controls
|||
ALL TIME
JAN
FEB
MAR
APR
MAY
JUN
JUL
AUG
SEP
preprint

The Screened Dewhirst Operator: Geometric Resolution of Rare Electroweak B0 Meson Angular Decays Against CERN LHCb Target Event Streams

Richard Stephen Dewhirst
Zenodo (CERN European Organization for Nuclear Research)
Particle physics theoretical and experimental studies
preprint

The Screened Dewhirst Operator: Geometric Resolution of Rare Electroweak B0 Meson Angular Decays Against CERN LHCb Target Event Streams

Richard Stephen Dewhirst
preprint en

Abstract

This standalone technical monograph explicitly details the covariant mathematical layout loops proving how the Screened Dewhirst Operator (Omega_D) framework natively resolves the long-standing 4.0-sigma rare electroweak B0 meson decay angular anomaly (P5' observable tension) recorded by the CERN LHCb and CMS detector collaborations. By deriving the system's field equations from an axiomatic Action Principle via Least Action minimisation, the guide strips away speculative, unobservable particle extensions (such as heavy Z' bosons or leptoquarks) and unobservable "scalar field leaks." Instead, it demonstrates that the extreme localized mass-energy density concentrated within higher-order electroweak quantum loop vertices triggers a microscopic, localized disformal modification of the spacetime metric. This local shift functions as an intrinsic geometric prism, altering the trajectory vectors and phase-space angular distributions of exiting muon-antimuon products directly through the linear mass-energy translation law (E = Omega_D m c^2). Crucially, the text provides the rigorous tensor calculus verifying that the total covariant divergence of the system remains locked to absolute zero (Grad_mu T^mu,nu = 0), ensuring that energy never disappears and never leaks from any tracker domain. The compendium includes a structured experimental verification index cross-examining the model's physical invariants directly against public CERN petabyte datasets.

Zenodo (CERN European Organization for Nuclear Research)
Particle physics theoretical and experimental studies
AI Navigator

Ask Laika to Summarize, Analyze, and Connect papers live on the map.

Summarize Papers & Methodologies

Extract key findings, datasets, and comparative methods across publications.

Benchmark Rankings & Visual Analytics

Rank top research institutions, authors, funders, topics, and journals by Field-Weighted Citation Impact (FWCI) and paper volume with instant charts.

Connect Distant Disciplines

Bridge topological clusters on the map to find hidden collaborative intersections.