Refuting the Mystification of Quantum Mechanics (2)

0
696

2. The Basic Framework of Topological Vortex Theory

2.1 Space as an Ideal Superfluid

Topological Vortex Theory posits that the essence of physical space is an ideal superfluid that is inviscid, incompressible, and isotropic [3]. This superfluid is not a metaphor but a continuous medium with real physical properties, whose microscopic excitations manifest as topological defects.

2.2 Topological Phase Transitions and the Formation of Spacetime Vortices

When the superfluid is perturbed or under specific boundary conditions, topological phase transitions occur, forming spacetime vortices [2]. These vortices possess stable topological structures, similar to vortex rings in classical fluids but existing within the spacetime background. Their fundamental characteristics include:

(1) Rotational Degrees of Freedom: Coexistence of left-handed and right-handed vortices, constituting a dialectically unified physical entity.

(2) Self-Organization: Vortices interact (e.g., through entanglement, merging, splitting) to form complex spacetime structures [4].

(3) Quantized Features: The circulation, energy, and angular momentum of vortices are naturally discretized, satisfying quantization conditions [1, 4].

2.3 The Foundational Nature of Low-Dimensional Spacetime Matter

Low-dimensional spacetime (e.g., two- or three-dimensional) vortex structures form the basis of high-dimensional spacetime structures. High-dimensional phenomena are essentially collective behaviors of low-dimensional structures. The "particle" behaviors described by quantum mechanics are actually dynamic manifestations of low-dimensional spacetime vortices.

3. Quantum Mechanics: The Mathematical Description of Low-Dimensional Spacetime Vortices

The mathematical formalism of quantum mechanics (e.g., wave functions, operators, eigenvalues) can perfectly describe the dynamics of topological vortices:

(1) The wave function describes the morphology and phase distribution of a vortex.

(2) Quantum entanglement corresponds to topological connections between vortices [5].

(3) The uncertainty principle reflects the constraints of topological stability on vortex structures during measurement.

(4) Spin directly corresponds to the chirality (left/right-handedness) of a vortex.

The key distinction is that Topological Vortex Theory provides explicit geometric entities for these mathematical objects, whereas traditional quantum mechanics remains at the level of mathematical representation.

Căutare
Categorii
Citeste mai mult
Shopping
LANA電子菸:台灣市場的潮流選擇
在台灣,電子霧化產品已成為健康吸菸的新趨勢,其中LANA 電子...
By Abv 134 2025-08-18 06:02:43 0 2K
Shopping
空軍一號潮流與搭配選購指南
提到街頭與經典並存的球鞋,nike air force 1 是許多人鞋櫃的必備款。 穩重的鞋型、耐穿的材質與百搭配色,讓 Nike Air Force經典款...
By Abv 134 2025-10-27 02:15:47 0 977
Networking
Italy Autonomous Vehicles Industry: Driving the Future of Mobility
The Italy Autonomous Vehicles Market is witnessing transformative growth as...
By Kajal Jadhav 2025-09-22 11:38:02 0 1K
Shopping
รีวิว RELX บุหรี่ไฟฟ้า รุ่นใหม่ล่าสุด กับประสบการณ์สูบที่เหนือกว่า
ในยุคที่บุหรี่ไฟฟ้าได้รับความนิยมมากขึ้นเรื่อย ๆ หนึ่งในแบรนด์ที่ครองใจผู้ใช้จำนวนมากคือ relx...
By Chenchen123 Chenchen123 2025-09-05 02:25:17 0 2K
Home
gunnersmart.com
https://gunnersmart.com – where owning a gun is a smart life ChoiceBuy Hand Guns in USA
By Nnamdum Loums 2025-10-09 17:08:28 1 1K