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Mystery Needing Theoretical Interpretation
  • hui peng
hui peng
James Pengs Lab

Corresponding Author:[email protected]

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Abstract

Young’s double slit experiment is the mystery of the quantum mechanics (Feynman). To explore the mystery, the double slit experiments have been extended to cross double slit experiments.
cross double slit
L = 20
L = 50 mm
L = 130 mm
L = 250 mm
L = 1200 mm
blob:https://www.techrxiv.org/d533330f-0c43-46d8-ac99-4d5a6dc5b8eb
Exp. A.1
blob:https://www.techrxiv.org/d41e4f20-99c9-420a-9def-a4b75d2249ca
blob:https://www.techrxiv.org/5671fee2-ce44-4c20-8eb9-1bcbe2f3871f
blob:https://www.techrxiv.org/e3f05315-2d96-48fa-a69c-3c37e5500d4f
blob:https://www.techrxiv.org/bd5db6a3-32ea-4251-902a-e69318f8166d
blob:https://www.techrxiv.org/792dba5f-0e15-40cc-a632-a68241130f9f
blob:https://www.techrxiv.org/7ce9f14c-535c-4354-b6be-fb59839abc63
Exp. A.2
blob:https://www.techrxiv.org/dc981908-4e00-4401-b5fa-962d736545c4
blob:https://www.techrxiv.org/138522db-39e3-4743-99ce-239ab567d22f
blob:https://www.techrxiv.org/5db31062-cbbd-4d60-b02d-b8c1ef97a199
blob:https://www.techrxiv.org/8c50243c-a8d0-4802-9649-c27e84b28a93
blob:https://www.techrxiv.org/5435dae5-62b6-4caf-95c2-537f9da3b331
blob:https://www.techrxiv.org/f35daacf-d3c7-4b2d-a02b-49e037274e71
Exp. A.3
blob:https://www.techrxiv.org/1250c99b-c90c-4674-acc4-49a4df935b87
blob:https://www.techrxiv.org/d73d9882-eb6f-491b-bbd4-7d20e3033981
blob:https://www.techrxiv.org/8512a804-a4ac-4a50-9d82-606f19c4d5d3
blob:https://www.techrxiv.org/43df7de8-7128-4cdf-a747-236be95af0dd
blob:https://www.techrxiv.org/5c100403-cbc9-44cc-98b8-b8932d2568ff
blob:https://www.techrxiv.org/62875629-fffa-4eeb-8b28-d7f8b3efafc4
Exp-A.4
blob:https://www.techrxiv.org/18efd2c4-4edb-4f17-8417-abebac6c94fd
blob:https://www.techrxiv.org/7d719fce-d72d-40a7-946e-a10f1d77016d
blob:https://www.techrxiv.org/3f2aa1ae-ad41-4c3f-a629-01a912ebc7bf
blob:https://www.techrxiv.org/b66d470d-b7f3-4594-a256-9fb62a3f0135
blob:https://www.techrxiv.org/ff751b95-d82f-4eb8-ab39-aabbf32f3ac4
blob:https://www.techrxiv.org/7d428565-2e5a-49a2-9c57-b391b6cc6547
Exp. A.5
blob:https://www.techrxiv.org/4918b2c5-3e99-4d30-a0d4-a02362a84425
blob:https://www.techrxiv.org/9d3d0aa9-f2fc-4e3f-b0e3-422079d161a4
blob:https://www.techrxiv.org/ae8bf297-d381-47bb-a226-9ca68a55d079
blob:https://www.techrxiv.org/06bf31a9-b484-42df-87d3-ce95df1d0408
blob:https://www.techrxiv.org/69d04751-e85b-422b-bdce-044a4479db2b
blob:https://www.techrxiv.org/6c264a07-bf8f-402c-ac11-9dec72d5e6d9
Exp A.6
blob:https://www.techrxiv.org/05c986f3-aa01-49a8-aab8-7f2d61177de8
blob:https://www.techrxiv.org/8f5cb559-f29e-42a9-af22-2e9c2c1ce67c
blob:https://www.techrxiv.org/2b3e4e54-a310-4339-a71e-d228aa6fa985
blob:https://www.techrxiv.org/fe73c811-b026-4988-bcfb-072e87efd5a5
blob:https://www.techrxiv.org/e41147e0-5dcf-4676-b97a-4487598a570a
In this article, we utilize the fact that each slit of the cross double slit (a double slit crossing a double slit) is divided into three segments by other two slits crossing, and experimentally show the function of each segment in producing both non-interference patterns (including Pre-Particle patterns, Particle patterns and Transition Patterns) and the Interference patterns by eliminate the segment and then, compare with the patterns of the standard cross double slit experiment. Although the non-interference patterns of different modified cross double slits are obviously different, the final interference patterns are surprisingly similar. This phenomenon needs a consistent theoretical interpretation, which would motivate the further development of optics. When applying the interference patterns of the cross double slit diaphragms, this phenomenon allows a tolerance on the defect of making the cross double slit diaphragm.