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Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation

As of 23 August 2026, this Paper Citation Record lists 34 of 34 outbound references and 0 inbound Pith citation observations for arXiv:2607.19930.

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pith.paper-citation-record.v1
2607.19930 v1

Coverage vector

measured 34 of 34 reference resolution

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Source: paper_references, paper_reference_links, observed 2026-08-01T11:20:22.384004Z

measured 34 of 34 standing notices

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34 of 34 outbound references displayed

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Outbound references

Observation c68b8795-cace-4cf5-b28a-e66d749ba4f1 · outbound

This paper cites an unresolved cited work.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Unresolved cited work

Reference 1

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Observation e96518fb-a041-4db3-96d5-7638b315caa6 · outbound

This paper cites Magnetron sputtering— milestones of 30 years.Vacuum, 84(12):1354–1359, 2010.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Magnetron sputtering— milestones of 30 years.Vacuum, 84(12):1354–1359, 2010

Reference 2

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Observation 7c47ec56-76f5-4840-ae47-fc4ed18e5e5e · outbound

This paper cites Khan.Handbook of Thin-Film Technology.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Khan.Handbook of Thin-Film Technology

Reference 3

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Observation ef1f315d-1b6b-47c7-b2b3-06170e789f3a · outbound

This paper cites Thornton.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Thornton

Reference 4

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Observation 1db73577-ac3b-4ce9-ac4a-23f53ae37adf · outbound

This paper cites an unresolved cited work.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Unresolved cited work

Reference 5

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Observation e68399d0-3061-4334-a6d7-2115007d4949 · outbound

This paper cites Czekaj, E.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Czekaj, E

Reference 6

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Observation 9377402d-add2-4e6e-a54b-4ae2f47f400b · outbound

This paper cites Rossnagel and Harold R.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Rossnagel and Harold R

Reference 7

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Observation b4626f81-99d1-440a-9e02-b14f4aecb16d · outbound

This paper cites Flat erosion magnetron sputter- ing with a moving unbalanced magnet.Vacuum, 80(7):662–666, 2006.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Flat erosion magnetron sputter- ing with a moving unbalanced magnet.Vacuum, 80(7):662–666, 2006

Reference 8

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Observation e875e353-de13-41b6-af73-808a8d116598 · outbound

This paper cites Raggl, J.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Raggl, J

Reference 9

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Observation 133743ac-a0ff-42ca-ae2a-34f6af1e8384 · outbound

This paper cites Evolution mechanism of sputtered film uni- formity with the erosion groove size: Integrated simulation and experiment.Molecules, 28(22):7660, 2023.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Evolution mechanism of sputtered film uni- formity with the erosion groove size: Integrated simulation and experiment.Molecules, 28(22):7660, 2023

Reference 10

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Observation 89a9e082-5ebc-466f-bc9c-c53d7255fd0b · outbound

This paper cites Kondo and K.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Kondo and K

Reference 11

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Observation 6228485e-3e66-4c3c-9613-95ecc317059f · outbound

This paper cites PIC–MCC numerical simulation of a DC planar magnetron.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation PIC–MCC numerical simulation of a DC planar magnetron

Reference 12

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Observation 2f5edf07-c2eb-4b3b-b8a7-d8d464e711ac · outbound

This paper cites Detailed nu- merical investigation of a DC sputter magnetron.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Detailed nu- merical investigation of a DC sputter magnetron

Reference 13

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Observation 532ac907-cd7c-410b-857b-4f530855ce2d · outbound

This paper cites Computer modelling of mag- netron discharges.Journal of Physics D: Applied Physics, 42(19):194018, 2009.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Computer modelling of mag- netron discharges.Journal of Physics D: Applied Physics, 42(19):194018, 2009

Reference 14

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Observation 7e5d8159-c418-4d4e-bfee-7d8f668b622d · outbound

This paper cites Particle-in- cell simulations for the improvement of the target 7 erosion uniformity by the permanent magnet con- figuration of DC magnetron sputtering systems.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Particle-in- cell simulations for the improvement of the target 7 erosion uniformity by the permanent magnet con- figuration of DC magnetron sputtering systems

Reference 15

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Observation 5253028e-0d5b-4425-b7da-b837f824a2ae · outbound

This paper cites Computer simulation of mag- netron sputtering—experience from the industry.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Computer simulation of mag- netron sputtering—experience from the industry

Reference 16

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Observation 0319921f-59c4-4f91-ab4f-0e219a6f41b7 · outbound

This paper cites Jimenez, Steven K.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Jimenez, Steven K

Reference 17

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Observation 2811f333-c3a7-49a4-8eec-f98844a42cdc · outbound

This paper cites Theory and molecular simulations of plasma sputtering, transport and deposition pro- cesses.The European Physical Journal D, 77:19, 2023.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Theory and molecular simulations of plasma sputtering, transport and deposition pro- cesses.The European Physical Journal D, 77:19, 2023

Reference 18

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Observation 96fae3b5-0c17-4d79-9545-aeead596d810 · outbound

This paper cites Biersack and L.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Biersack and L

Reference 19

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Observation c0a2f2b0-59b8-4427-bca5-a6a952a85722 · outbound

This paper cites Modeling target erosion during reactive sputtering.Applied Surface Science, 331:185–192, 2015.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Modeling target erosion during reactive sputtering.Applied Surface Science, 331:185–192, 2015

Reference 20

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Observation 8cb042a7-9da0-47fd-a153-50fddb517fc9 · outbound

This paper cites Modeling reactive magnetron sputtering: Opportunities and challenges.Thin Solid Films, 688:137326, 2019.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Modeling reactive magnetron sputtering: Opportunities and challenges.Thin Solid Films, 688:137326, 2019

Reference 21

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Observation 34399643-510d-428b-91d8-8e579ea048e5 · outbound

This paper cites The characteristics of electrical dis- charges in magnetic fields.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation The characteristics of electrical dis- charges in magnetic fields

Reference 22

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Observation c0d06a13-e1e7-4a6e-924c-4d5c96c7c5df · outbound

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Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Unresolved cited work

Reference 23

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Observation c1ec89d4-a436-4be6-bff2-21954c0e682e · outbound

This paper cites Moritz, M.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Moritz, M

Reference 24

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This paper cites an unresolved cited work.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Unresolved cited work

Reference 25

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Observation d1337c2f-0a7d-4ab7-8e96-47d1bae90b44 · outbound

This paper cites The effect of the magnetic field strength on the sheath region of a DC magnetron discharge.Journal of Physics D: Applied Physics, 41(20):202007, 2008.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation The effect of the magnetic field strength on the sheath region of a DC magnetron discharge.Journal of Physics D: Applied Physics, 41(20):202007, 2008

Reference 26

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Observation 89f84099-51a9-4b8a-bfd2-0b7502d05097 · outbound

This paper cites an unresolved cited work.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Unresolved cited work

Reference 27

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Observation b3a6fce2-6f88-4d6e-b924-f93ffb49755e · outbound

This paper cites Vahedi and M.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Vahedi and M

Reference 28

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This paper cites Biagi-v7.1 electron collision cross sections for argon.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Biagi-v7.1 electron collision cross sections for argon

Reference 29

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Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Unresolved cited work

Reference 30

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This paper cites Yamamura, S.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Yamamura, S

Reference 31

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Observation 4e30e65d-b16f-45db-89d0-9a2c278366d6 · outbound

This paper cites Study electron transport coefficients for Ar, O2 and their mixtures by using an EEDF program.Journal of Physics: Conference Series, 1003:012116, 2018.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Study electron transport coefficients for Ar, O2 and their mixtures by using an EEDF program.Journal of Physics: Conference Series, 1003:012116, 2018

Reference 32

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This paper cites an unresolved cited work.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Unresolved cited work

Reference 33

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Observation 67235ea7-1a3a-4573-93ea-1df607916a61 · outbound

This paper cites Influence of electron recapture by the cathode upon the discharge characteristics in DC planar mag- netrons.Physical Review E, 72(5):056402, 2005.

Reduced-order non-self-consistent Monte Carlo simulation of a planar magnetron discharge: electron heating, recapture and racetrack formation Influence of electron recapture by the cathode upon the discharge characteristics in DC planar mag- netrons.Physical Review E, 72(5):056402, 2005

Reference 34

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