The Stargate—a device capable of instantly transporting a person or object to a distant point in space—has long existed only in science fiction. Based on the core idea that "space points possess intrinsic frequencies," this paper proposes a concise and complete physical realization scheme. The system employs a dual-frequency synchronous mode: the object's activation frequency fingerprint and the destination space point's frequency fingerprint are applied simultaneously. The basal structure is universally and instantaneously connected, and the information cluster knows its destination the moment it detaches, requiring no intermediate storage or routing wait. This paper elaborates on the physical mechanism of the synchronous mode, the method of calibrating space point frequencies via quantum vacuum fluctuations, and the theoretical architecture of the Stargate. The concept that space points have frequencies is supported by solid experimental evidence: AWUT theory reveals that different materials exhibit absorption peaks clustered at specific frequencies, with 8σ significance indicating a universal frequency background transcending matter; femtosecond electro-optic sampling has enabled direct detection of vacuum fluctuations, providing a feasible approach for measuring space point frequencies. This paper offers a complete theoretical framework for the scientific realization of the Stargate.
Lei Ding (Sat,) studied this question.