How Fully Homomorphic Encryption Allows For True End-to-End Encryption

How Fully Homomorphic Encryption Allows For True End-to-End Encryption

How encrypted is your encryption? It’s a question that 99.99% of people can’t answer because 99.99% of the world aren’t cryptographers. They don’t code messenger apps, develop encryption algorithms or secure enterprise infrastructure. Like the efficacy of air bags or the optimal speed at which to run a particle accelerator, most of us just have to trust the experts when they say it works.
We’ll get to what the experts say on encryption shortly, but first let’s summarize what we do know about end-to-end encryption (E2EE). End-to-end encryption is a method of data encryption where only the communicating users can read the messages. In an E2EE system, the data is encrypted on the sender’s device and only decrypted on the recipient’s device. This prevents third parties, including the service provider that transmits or stores the data, from being able to decrypt or access the messages. 
Used in everything from email to cloud storage, E2EE is the backbone of the internet. It

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